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Friday, December 19, 2025

CT scan

From Wikipedia, the free encyclopedia
 
CT scan
Other names
  • computed tomography
  • CAT scan (computerized axial tomography, computer aided tomography)
  • X-ray CT (X-ray computed tomography)
SpecialtyRadiology
ICD-10-PCSB?2
ICD-9-CM88.38
MeSHD014057
OPS-301 code3–20...3–26
MedlinePlus003330

A computed tomography scan (CT scan), formerly called computed axial tomography scan (CAT scan), is a medical imaging technique used to obtain detailed internal images of the body. The personnel that perform CT scans are called radiographers or radiology technologists. CT scanners use a rotating X-ray tube and a row of detectors placed in a gantry to measure X-ray attenuations by different tissues inside the body. The multiple X-ray measurements taken from different angles are then processed on a computer using tomographic reconstruction algorithms to produce tomographic (cross-sectional) images (virtual "slices") of a body. CT scans can be used in patients with metallic implants or pacemakers, for whom magnetic resonance imaging (MRI) is contraindicated.

Since its development in the 1970s, CT scanning has proven to be a versatile imaging technique. While CT is most prominently used in medical diagnosis, it can also be used to form images of non-living objects. The 1979 Nobel Prize in Physiology or Medicine was awarded jointly to South African-American physicist Allan MacLeod Cormack and British electrical engineer Godfrey Hounsfield "for the development of computer-assisted tomography".

Types

On the basis of image acquisition and procedures, various type of scanners are available in the market.

Sequential CT

Sequential CT, also known as step-and-shoot CT, is a type of scanning method in which the CT table moves stepwise. The table increments to a particular location and then stops which is followed by the X-ray tube rotation and acquisition of a slice. The table then increments again, and another slice is taken. The table movement stops while taking slices. This results in an increased time of scanning.

Spiral CT

Drawing of CT fan beam and patient in a CT imaging system
CT scan of the thorax. The axial slice (right) is the image that corresponds to segment 2/33 on the radiograph. (left).

Spinning tube, commonly called spiral CT, or helical CT, is an imaging technique in which an entire X-ray tube is spun around the central axis of the area being scanned. These are the dominant type of scanners on the market because they have been manufactured longer and offer a lower cost of production and purchase. The main limitation of this type of CT is the bulk and inertia of the equipment (X-ray tube assembly and detector array on the opposite side of the circle) which limits the speed at which the equipment can spin. Some designs use two X-ray sources and detector arrays offset by an angle, as a technique to improve temporal resolution.

Electron beam tomography

Electron beam tomography (EBT) is a specific form of CT in which a large enough X-ray tube is constructed so that only the path of the electrons, travelling between the cathode and anode of the X-ray tube, are spun using deflection coils. This type had a major advantage since sweep speeds can be much faster, allowing for less blurry imaging of moving structures, such as the heart and arteries. Fewer scanners of this design have been produced when compared with spinning tube types, mainly due to the higher cost associated with building a much larger X-ray tube and detector array and limited anatomical coverage.

Dual energy CT

Dual energy CT, also known as spectral CT, is an advancement of computed Tomography in which two energies are used to create two sets of data.[13] A dual energy CT may employ dual source, single source with dual detector layer, single source with energy switching methods to get two different sets of data.[14]

  • Dual source CT is an advanced scanner with a two X-ray tube detector system, unlike conventional single tube systems. These two detector systems are mounted on a single gantry at 90° in the same plane. Dual source CT scanners allow fast scanning with higher temporal resolution by acquiring a full CT slice in only half a rotation. Fast imaging reduces motion blurring at high heart rates and potentially allowing for shorter breath-hold time. This is particularly useful for ill patients having difficulty holding their breath or unable to take heart-rate lowering medication.
  • Single source with energy switching is another mode of dual energy CT in which a single tube is operated at two different energies by switching the energies frequently.

CT perfusion imaging

CT Perfusion scan of the brain

CT perfusion imaging is a specific form of CT to assess flow through blood vessels whilst injecting a contrast agent. Blood flow, blood transit time, and organ blood volume, can all be calculated with reasonable sensitivity and specificity. This type of CT may be used on the heart, although sensitivity and specificity for detecting abnormalities are still lower than for other forms of CT. This may also be used on the brain, where CT perfusion imaging can often detect poor brain perfusion well before it is detected using a conventional spiral CT scan. This is better for stroke diagnosis than other CT types.

PET CT

PET-CT scan of chest

Positron emission tomography–computed tomography is a hybrid CT modality which combines, in a single gantry, a positron emission tomography (PET) scanner and an X-ray computed tomography (CT) scanner, to acquire sequential images from both devices in the same session, which are combined into a single superposed (co-registered) image. Thus, functional imaging obtained by PET, which depicts the spatial distribution of metabolic or biochemical activity in the body can be more precisely aligned or correlated with anatomic imaging obtained by CT scanning.

PET-CT gives both anatomical and functional details of an organ under examination and is helpful in detecting different type of cancers.

Medical use

Since its introduction in the 1970s, CT has become an important tool in medical imaging to supplement conventional X-ray imaging and medical ultrasonography. It has more recently been used for preventive medicine or screening for disease, for example, CT colonography for people with a high risk of colon cancer, or full-motion heart scans for people with a high risk of heart disease. Several institutions offer full-body scans for the general population although this practice goes against the advice and official position of many professional organizations in the field primarily due to the radiation dose applied.

The use of CT scans has increased dramatically over the last two decades in many countries. An estimated 72 million scans were performed in the United States in 2007 and more than 80 million in 2015.

Computed tomography of human brain, from base of the skull to top. Taken with intravenous contrast medium.

CT scanning of the head is typically used to detect infarction (stroke), tumors, calcifications, haemorrhage, and bone trauma. Of the above, hypodense (dark) structures can indicate edema and infarction, hyperdense (bright) structures indicate calcifications and haemorrhage and bone trauma can be seen as disjunction in bone windows. Tumors can be detected by the swelling and anatomical distortion they cause, or by surrounding edema. CT scanning of the head is also used in CT-guided stereotactic surgery and radiosurgery for treatment of intracranial tumors, arteriovenous malformations, and other surgically treatable conditions using a device known as the N-localizer.

Neck

Contrast CT is generally the initial study of choice for neck masses in adults. CT of the thyroid plays an important role in the evaluation of thyroid cancer. CT scans often incidentally find thyroid abnormalities, and so is often the preferred investigation modality for thyroid abnormalities.

Lungs

A CT scan can be used for detecting both acute and chronic changes in the lung parenchyma, the tissue of the lungs. It is particularly helpful because normal two-dimensional X-rays do not show such defects. A variety of techniques are used, depending on the suspected abnormality. For evaluation of chronic interstitial processes such as emphysema, and fibrosis, thin sections with high spatial frequency reconstructions are used; often scans are performed both on inspiration and expiration. This special technique is called high resolution CT that produces a sampling of the lung, and not continuous images.

HRCT images of a normal thorax in axial, coronal and sagittal planes, respectively.
Bronchial wall thickness (T) and diameter of the bronchus (D)

Bronchial wall thickening can be seen on lung CTs and generally (but not always) implies inflammation of the bronchi.

An incidentally found nodule in the absence of symptoms (sometimes referred to as an incidentaloma) may raise concerns that it might represent a tumor, either benign or malignant. Perhaps persuaded by fear, patients and doctors sometimes agree to an intensive schedule of CT scans, sometimes up to every three months and beyond the recommended guidelines, in an attempt to do surveillance on the nodules. However, established guidelines advise that patients without a prior history of cancer and whose solid nodules have not grown over a two-year period are unlikely to have any malignant cancer. For this reason, and because no research provides supporting evidence that intensive surveillance gives better outcomes, and because of risks associated with having CT scans, patients should not receive CT screening in excess of those recommended by established guidelines.

Angiography

Example of a CTPA, demonstrating a saddle embolus (dark horizontal line) occluding the pulmonary arteries (bright white triangle)

Computed tomography angiography (CTA) is a type of contrast CT to visualize the arteries and veins throughout the body. This ranges from arteries serving the brain to those bringing blood to the lungs, kidneys, arms and legs. An example of this type of exam is CT pulmonary angiogram (CTPA) used to diagnose pulmonary embolism (PE). It employs computed tomography and an iodine-based contrast agent to obtain an image of the pulmonary arteries. CT scans can reduce the risk of angiography by providing clinicians with more information about the positioning and number of clots prior to the procedure.

Cardiac

A CT scan of the heart is performed to gain knowledge about cardiac or coronary anatomy. Traditionally, cardiac CT scans are used to detect, diagnose, or follow up coronary artery disease. More recently CT has played a key role in the fast-evolving field of transcatheter structural heart interventions, more specifically in the transcatheter repair and replacement of heart valves.

The main forms of cardiac CT scanning are:

  • Coronary CT angiography (CCTA): the use of CT to assess the coronary arteries of the heart. The subject receives an intravenous injection of radiocontrast, and then the heart is scanned using a high-speed CT scanner, allowing radiologists to assess the extent of occlusion in the coronary arteries, usually to diagnose coronary artery disease.
  • Coronary CT calcium scan: also used for the assessment of severity of coronary artery disease. Specifically, it looks for calcium deposits in the coronary arteries that can narrow arteries and increase the risk of a heart attack. A typical coronary CT calcium scan is done without the use of radiocontrast, but it can possibly be done from contrast-enhanced images as well.

To better visualize the anatomy, post-processing of the images is common. Most common are multiplanar reconstructions (MPR) and volume rendering. For more complex anatomies and procedures, such as heart valve interventions, a true 3D reconstruction or a 3D print is created based on these CT images to gain a deeper understanding.

Abdomen and pelvis

CT scan of a normal abdomen and pelvis, in sagittal plane, coronal and axial planes, respectively.

CT is an accurate technique for diagnosis of abdominal diseases such as Crohn's disease, GIT bleeding, and diagnosis and staging of cancer, as well as follow-up after cancer treatment to assess response. It is commonly used to investigate acute abdominal pain.

Non-contrast-enhanced CT scans are the gold standard for diagnosing kidney stone disease. They allow clinicians to estimate the size, volume, and density of stones, helping to guide further treatment; with size being especially important in predicting the time to spontaneous passage of a stone.

Axial skeleton and extremities

For the axial skeleton and extremities, CT is often used to image complex fractures, especially ones around joints, because of its ability to reconstruct the area of interest in multiple planes. Fractures, ligamentous injuries, and dislocations can easily be recognized with a 0.2 mm resolution. With modern dual-energy CT scanners, new areas of use have been established, such as aiding in the diagnosis of gout.

Biomechanical use

CT is used in biomechanics to quickly reveal the geometry, anatomy, density and elastic moduli of biological tissues.

Other uses

Industrial use

Industrial CT scanning (industrial computed tomography) is a process which uses X-ray equipment to produce 3D representations of components both externally and internally. Industrial CT scanning has been used in many areas of industry for internal inspection of components. Some of the key uses for CT scanning have been flaw detection, failure analysis, metrology, assembly analysis, image-based finite element methods and reverse engineering applications. CT scanning is also employed in the imaging and conservation of museum artifacts.

Aviation security

CT scanning has also found an application in transport security (predominantly airport security) where it is currently used in a materials analysis context for explosives detection CTX (explosive-detection device) and is also under consideration for automated baggage/parcel security scanning using computer vision based object recognition algorithms that target the detection of specific threat items based on 3D appearance (e.g. guns, knives, liquid containers). Its usage in airport security pioneered at Shannon Airport in March 2022 has ended the ban on liquids over 100 ml there, a move that Heathrow Airport plans for a full roll-out on 1 December 2022 and the TSA spent $781.2 million on an order for over 1,000 scanners, ready to go live in the summer.

Geological use

X-ray CT is used in geological studies to quickly reveal materials inside a drill core. Dense minerals such as pyrite and barite appear brighter and less dense components such as clay appear dull in CT images.

Paleontological use

Traditional methods of studying fossils are often destructive, such as the use of thin sections and physical preparation. X-ray CT is used in paleontology to non-destructively visualize fossils in 3D. This has many advantages. For example, we can look at fragile structures that might never otherwise be able to be studied. In addition, one can freely move around models of fossils in virtual 3D space to inspect it without damaging the fossil.

Cultural heritage use

X-ray CT and micro-CT can also be used for the conservation and preservation of objects of cultural heritage. For many fragile objects, direct research and observation can be damaging and can degrade the object over time. Using CT scans, conservators and researchers are able to determine the material composition of the objects they are exploring, such as the position of ink along the layers of a scroll, without any additional harm. These scans have been optimal for research focused on the workings of the Antikythera mechanism or the text hidden inside the charred outer layers of the En-Gedi Scroll. However, they are not optimal for every object subject to these kinds of research questions, as there are certain artifacts like the Herculaneum papyri in which the material composition has very little variation along the inside of the object. After scanning these objects, computational methods can be employed to examine the insides of these objects, as was the case with the virtual unwrapping of the En-Gedi scroll and the Herculaneum papyri. Micro-CT has also proved useful for analyzing more recent artifacts such as still-sealed historic correspondence that employed the technique of letterlocking (complex folding and cuts) that provided a "tamper-evident locking mechanism". Further examples of use cases in archaeology is imaging the contents of sarcophagi or ceramics.

Recently, CWI in Amsterdam has collaborated with Rijksmuseum to investigate art object inside details in the framework called IntACT.

Microorganism research

Varied types of fungus can degrade wood to different degrees, one Belgium research group has used X-ray CT 3 dimension with sub-micron resolution unveiled fungi can penetrate micropores of 0.6 μm under certain conditions.

Timber sawmill

Sawmills use industrial CT scanners to detect round defects, for instance knots, to improve total value of timber productions. Most sawmills are planning to incorporate this robust detection tool to improve productivity in the long run, however initial investment cost is high.

Interpretation of results

Presentation

Types of presentations of CT scans:
− Average intensity projection
Maximum intensity projection
− Thin slice (median plane)
Volume rendering by high and low threshold for radiodensity

The result of a CT scan is a volume of voxels, which may be presented to a human observer by various methods, which broadly fit into the following categories:

  • Slices (of varying thickness). Thin slice is generally regarded as planes representing a thickness of less than 3 mm. Thick slice is generally regarded as planes representing a thickness between 3 mm and 5 mm.
  • Projection, including maximum intensity projection and average intensity projection
  • Volume rendering (VR)

Technically, all volume renderings become projections when viewed on a 2-dimensional display, making the distinction between projections and volume renderings a bit vague. The epitomes of volume rendering models feature a mix of for example coloring and shading in order to create realistic and observable representations.

Two-dimensional CT images are conventionally rendered so that the view is as though looking up at it from the patient's feet. Hence, the left side of the image is to the patient's right and vice versa, while anterior in the image also is the patient's anterior and vice versa. This left-right interchange corresponds to the view that physicians generally have in reality when positioned in front of patients.

Grayscale

Pixels in an image obtained by CT scanning are displayed in terms of relative radiodensity. The pixel itself is displayed according to the mean attenuation of the tissue(s) that it corresponds to on a scale from +3,071 (most attenuating) to −1,024 (least attenuating) on the Hounsfield scale. A pixel is a two dimensional unit based on the matrix size and the field of view. When the CT slice thickness is also factored in, the unit is known as a voxel, which is a three-dimensional unit. Water has an attenuation of 0 Hounsfield units (HU), while air is −1,000 HU, cancellous bone is typically +400 HU, and cranial bone can reach 2,000 HU. The attenuation of metallic implants depends on the atomic number of the element used: Titanium usually has an amount of +1000 HU, iron steel can completely block the X-ray and is, therefore, responsible for well-known line-artifacts in computed tomograms. Artifacts are caused by abrupt transitions between low- and high-density materials, which results in data values that exceed the dynamic range of the processing electronics.

Windowing

CT data sets have a very high dynamic range which must be reduced for display or printing. This is typically done via a process of "windowing", which maps a range (the "window") of pixel values to a grayscale ramp. For example, CT images of the brain are commonly viewed with a window extending from 0 HU to 80 HU. Pixel values of 0 and lower, are displayed as black; values of 80 and higher are displayed as white; values within the window are displayed as a gray intensity proportional to position within the window. The window used for display must be matched to the X-ray density of the object of interest, in order to optimize the visible detail. Window width and window level parameters are used to control the windowing of a scan.

Multiplanar reconstruction and projections

Typical screen layout for diagnostic software, showing one volume rendering (VR) and multiplanar view of three thin slices in the axial (upper right), sagittal (lower left), and coronal planes (lower right)
Special planes are sometimes useful, such as this oblique longitudinal plane in order to visualize the neuroforamina of the vertebral column, showing narrowing at two levels, causing radiculopathy. The smaller images are axial plane slices.

Multiplanar reconstruction (MPR) is the process of converting data from one anatomical plane (usually transverse) to other planes. It can be used for thin slices as well as projections. Multiplanar reconstruction is possible as present CT scanners provide almost isotropic resolution.

MPR is used almost in every scan. The spine is frequently examined with it. An image of the spine in axial plane can only show one vertebral bone at a time and cannot show its relation with other vertebral bones. By reformatting the data in other planes, visualization of the relative position can be achieved in sagittal and coronal plane.

New software allows the reconstruction of data in non-orthogonal (oblique) planes, which help in the visualization of organs which are not in orthogonal planes. It is better suited for visualization of the anatomical structure of the bronchi as they do not lie orthogonal to the direction of the scan.

Curved-plane reconstruction (or curved planar reformation = CPR) is performed mainly for the evaluation of vessels. This type of reconstruction helps to straighten the bends in a vessel, thereby helping to visualize a whole vessel in a single image or in multiple images. After a vessel has been "straightened", measurements such as cross-sectional area and length can be made. This is helpful in preoperative assessment of a surgical procedure.

For 2D projections used in radiation therapy for quality assurance and planning of external beam radiotherapy, including digitally reconstructed radiographs, see Beam's eye view.

Examples of different algorithms of thickening multiplanar reconstructions
Type of projection Schematic illustration Examples (10 mm slabs) Description Uses
Average intensity projection (AIP) The average attenuation of each voxel is displayed. The image will get smoother as slice thickness increases. It will look more and more similar to conventional projectional radiography as slice thickness increases. Useful for identifying the internal structures of a solid organ or the walls of hollow structures, such as intestines.
Maximum intensity projection (MIP) The voxel with the highest attenuation is displayed. Therefore, high-attenuating structures such as blood vessels filled with contrast media are enhanced. Useful for angiographic studies and identification of pulmonary nodules.
Minimum intensity projection (MinIP) The voxel with the lowest attenuation is displayed. Therefore, low-attenuating structures such as air spaces are enhanced. Useful for assessing the lung parenchyma.

Volume rendering

3D human skull from computed tomography data

A threshold value of radiodensity is set by the operator (e.g., a level that corresponds to bone). With the help of edge detection image processing algorithms a 3D model can be constructed from the initial data and displayed on screen. Various thresholds can be used to get multiple models, each anatomical component such as muscle, bone and cartilage can be differentiated on the basis of different colours given to them. However, this mode of operation cannot show interior structures.

Surface rendering is limited technique as it displays only the surfaces that meet a particular threshold density, and which are towards the viewer. However, In volume rendering, transparency, colours and shading are used which makes it easy to present a volume in a single image. For example, Pelvic bones could be displayed as semi-transparent, so that, even viewing at an oblique angle one part of the image does not hide another.

Image quality

Dose versus image quality

An important issue within radiology today is how to reduce the radiation dose during CT examinations without compromising the image quality. In general, higher radiation doses result in higher-resolution images, while lower doses lead to increased image noise and unsharp images. However, increased dosage raises the adverse side effects, including the risk of radiation-induced cancer – a four-phase abdominal CT gives the same radiation dose as 300 chest X-rays. Several methods that can reduce the exposure to ionizing radiation during a CT scan exist.

  1. New software technology can significantly reduce the required radiation dose. New iterative tomographic reconstruction algorithms (e.g., iterative Sparse Asymptotic Minimum Variance) could offer super-resolution without requiring higher radiation dose.
  2. Individualize the examination and adjust the radiation dose to the body type and body organ examined. Different body types and organs require different amounts of radiation.
  3. Higher resolution is not always suitable, such as detection of small pulmonary masses.

Artifacts

Although images produced by CT are generally faithful representations of the scanned volume, the technique is susceptible to a number of artifacts, such as the following:

Streak artifact
Streaks are often seen around materials that block most X-rays, such as metal or bone. Numerous factors contribute to these streaks: under sampling, photon starvation, motion, beam hardening, and Compton scatter. This type of artifact commonly occurs in the posterior fossa of the brain, or if there are metal implants. The streaks can be reduced using newer reconstruction techniques. Approaches such as metal artifact reduction (MAR) can also reduce this artifact. MAR techniques include spectral imaging, where CT images are taken with photons of different energy levels, and then synthesized into monochromatic images with special software such as GSI (Gemstone Spectral Imaging).
Partial volume effect
This appears as "blurring" of edges. It is due to the scanner being unable to differentiate between a small amount of high-density material (e.g., bone) and a larger amount of lower density (e.g., cartilage). The reconstruction assumes that the X-ray attenuation within each voxel is homogeneous; this may not be the case at sharp edges. This is most commonly seen in the z-direction (craniocaudal direction), due to the conventional use of highly anisotropic voxels, which have a much lower out-of-plane resolution, than in-plane resolution. This can be partially overcome by scanning using thinner slices, or an isotropic acquisition on a modern scanner.
Ring artifact
Probably the most common mechanical artifact, the image of one or many "rings" appears within an image. They are usually caused by the variations in the response from individual elements in a two dimensional X-ray detector due to defect or miscalibration. Ring artifacts can largely be reduced by intensity normalization, also referred to as flat field correction. Remaining rings can be suppressed by a transformation to polar space, where they become linear stripes. A comparative evaluation of ring artefact reduction on X-ray tomography images showed that the method of Sijbers and Postnov can effectively suppress ring artefacts.
Noise
This appears as grain on the image and is caused by a low signal to noise ratio. This occurs more commonly when a thin slice thickness is used. It can also occur when the power supplied to the X-ray tube is insufficient to penetrate the anatomy.
Windmill
Streaking appearances can occur when the detectors intersect the reconstruction plane. This can be reduced with filters or a reduction in pitch.
Beam hardening
This can give a "cupped appearance" when grayscale is visualized as height. It occurs because conventional sources, like X-ray tubes emit a polychromatic spectrum. Photons of higher photon energy levels are typically attenuated less. Because of this, the mean energy of the spectrum increases when passing the object, often described as getting "harder". This leads to an effect increasingly underestimating material thickness, if not corrected. Many algorithms exist to correct for this artifact. They can be divided into mono- and multi-material methods.

Advantages

CT scanning has several advantages over traditional two-dimensional medical radiography. First, CT eliminates the superimposition of images of structures outside the area of interest. Second, CT scans have greater image resolution, enabling examination of finer details. CT can distinguish between tissues that differ in radiographic density by 1% or less. Third, CT scanning enables multiplanar reformatted imaging: scan data can be visualized in the transverse (or axial), coronal, or sagittal plane, depending on the diagnostic task.

The improved resolution of CT has permitted the development of new investigations. For example, CT angiography avoids the invasive insertion of a catheter. CT scanning can perform a virtual colonoscopy with greater accuracy and less discomfort for the patient than a traditional colonoscopy. Virtual colonography is far more accurate than a barium enema for detection of tumors and uses a lower radiation dose.

CT is a moderate-to-high radiation diagnostic technique. The radiation dose for a particular examination depends on multiple factors: volume scanned, patient build, number and type of scan protocol, and desired resolution and image quality. Two helical CT scanning parameters, tube current and pitch, can be adjusted easily and have a profound effect on radiation. CT scanning is more accurate than two-dimensional radiographs in evaluating anterior interbody fusion, although they may still over-read the extent of fusion.

Adverse effects

Cancer

The radiation used in CT scans can damage body cells, including DNA molecules, which can lead to radiation-induced cancer. The radiation doses received from CT scans is variable. Compared to the lowest dose X-ray techniques, CT scans can have 100 to 1,000 times higher dose than conventional X-rays. However, a lumbar spine X-ray has a similar dose as a head CT. Articles in the media often exaggerate the relative dose of CT by comparing the lowest-dose X-ray techniques (chest X-ray) with the highest-dose CT techniques. In general, a routine abdominal CT has a radiation dose similar to three years of average background radiation.

Large scale population-based studies have consistently demonstrated that low dose radiation from CT scans has impacts on cancer incidence in a variety of cancers. For example, in a large population-based Australian cohort it was found that up to 3.7% of brain cancers were caused by CT scan radiation. Some experts project that in the future, between three and five percent of all cancers would result from medical imaging. An Australian study of 10.9 million people reported that the increased incidence of cancer after CT scan exposure in this cohort was mostly due to irradiation. In this group, one in every 1,800 CT scans was followed by an excess cancer. If the lifetime risk of developing cancer is 40% then the absolute risk rises to 40.05% after a CT. The risks of CT scan radiation are especially important in patients undergoing recurrent CT scans within a short time span of one to five years.

Some experts note that CT scans are known to be "overused," and "there is distressingly little evidence of better health outcomes associated with the current high rate of scans." On the other hand, a recent paper analyzing the data of patients who received high cumulative doses showed a high degree of appropriate use. This creates an important issue of cancer risk to these patients. Moreover, a highly significant finding that was previously unreported is that some patients received >100 mSv dose from CT scans in a single day, which counteracts existing criticisms some investigators may have on the effects of protracted versus acute exposure.

There are contrarian views and the debate is ongoing. Some studies have shown that publications indicating an increased risk of cancer from typical doses of body CT scans are plagued with serious methodological limitations and several highly improbable results, concluding that no evidence indicates such low doses cause any long-term harm. One study estimated that as many as 0.4% of cancers in the United States resulted from CT scans, and that this may have increased to as much as 1.5 to 2% based on the rate of CT use in 2007. Others dispute this estimate, as there is no consensus that the low levels of radiation used in CT scans cause damage. Lower radiation doses are used in many cases, such as in the investigation of renal colic.

A person's age plays a significant role in the subsequent risk of cancer. Estimated lifetime cancer mortality risks from an abdominal CT of a one-year-old is 0.1%, or 1:1000 scans. The risk for someone who is 40 years old is half that of someone who is 20 years old with substantially less risk in the elderly. The International Commission on Radiological Protection estimates that the risk to a fetus being exposed to 10 mGy (a unit of radiation exposure) increases the rate of cancer before 20 years of age from 0.03% to 0.04% (for reference a CT pulmonary angiogram exposes a fetus to 4 mGy). A 2012 review did not find an association between medical radiation and cancer risk in children noting however the existence of limitations in the evidences over which the review is based. CT scans can be performed with different settings for lower exposure in children with most manufacturers of CT scans as of 2007 having this function built in. Furthermore, certain conditions can require children to be exposed to multiple CT scans.

Current recommendations are to inform patients of the risks of CT scanning. However, employees of imaging centers tend not to communicate such risks unless patients ask.

Contrast reactions

In the United States half of CT scans are contrast CTs using intravenously injected radiocontrast agents. The most common reactions from these agents are mild, including nausea, vomiting, and an itching rash. Severe life-threatening reactions may rarely occur. Overall reactions occur in 1 to 3% with nonionic contrast and 4 to 12% of people with ionic contrast. Skin rashes may appear within a week to 3% of people.

The old radiocontrast agents caused anaphylaxis in 1% of cases while the newer, low-osmolar agents cause reactions in 0.01–0.04% of cases. Death occurs in about 2 to 30 people per 1,000,000 administrations, with newer agents being safer. There is a higher risk of mortality in those who are female, elderly or in poor health, usually secondary to either anaphylaxis or acute kidney injury.

The contrast agent may induce contrast-induced nephropathy. This occurs in 2 to 7% of people who receive these agents, with greater risk in those who have preexisting kidney failure, preexisting diabetes, or reduced intravascular volume. People with mild kidney impairment are usually advised to ensure full hydration for several hours before and after the injection. For moderate kidney failure, the use of iodinated contrast should be avoided; this may mean using an alternative technique instead of CT. Those with severe kidney failure requiring dialysis require less strict precautions, as their kidneys have so little function remaining that any further damage would not be noticeable and the dialysis will remove the contrast agent; it is normally recommended, however, to arrange dialysis as soon as possible following contrast administration to minimize any adverse effects of the contrast.

In addition to the use of intravenous contrast, orally administered contrast agents are frequently used when examining the abdomen. These are frequently the same as the intravenous contrast agents, merely diluted to approximately 10% of the concentration. However, oral alternatives to iodinated contrast exist, such as very dilute (0.5–1% w/v) barium sulfate suspensions. Dilute barium sulfate has the advantage that it does not cause allergic-type reactions or kidney failure, but cannot be used in patients with suspected bowel perforation or suspected bowel injury, as leakage of barium sulfate from damaged bowel can cause fatal peritonitis.

Side effects from contrast agents, administered intravenously in some CT scans, might impair kidney performance in patients with kidney disease, although this risk is now believed to be lower than previously thought.

Scan dose

Examination Typical effective
dose
(mSv)
to the whole body
Typical absorbed
dose
(mGy)
to the organ in question
Annual background radiation 2.4 2.4
Chest X-ray 0.02 0.01–0.15
Head CT 1–2 56
Screening mammography 0.4 3
Abdominal CT 8 14
Chest CT 5–7 13
CT colonography 6–11
Chest, abdomen and pelvis CT 9.9 12
Cardiac CT angiogram 9–12 40–100
Barium enema 15 15
Neonatal abdominal CT 20 20

The table reports average radiation exposures; however, there can be a wide variation in radiation doses between similar scan types, where the highest dose could be as much as 22 times higher than the lowest dose. A typical plain film X-ray involves radiation dose of 0.01 to 0.15 mGy, while a typical CT can involve 10–20 mGy for specific organs, and can go up to 80 mGy for certain specialized CT scans.

For purposes of comparison, the world average dose rate from naturally occurring sources of background radiation is 2.4 mSv per year, equal for practical purposes in this application to 2.4 mGy per year. While there is some variation, most people (99%) received less than 7 mSv per year as background radiation. Medical imaging as of 2007 accounted for half of the radiation exposure of those in the United States with CT scans making up two thirds of this amount. In the United Kingdom it accounts for 15% of radiation exposure. The average radiation dose from medical sources is ≈0.6 mSv per person globally as of 2007. Those in the nuclear industry in the United States are limited to doses of 50 mSv a year and 100 mSv every 5 years.

Lead is the main material used by radiography personnel for shielding against scattered X-rays.

Radiation dose units

The radiation dose reported in the gray or mGy unit is proportional to the amount of energy that the irradiated body part is expected to absorb, and the physical effect (such as DNA double strand breaks) on the cells' chemical bonds by X-ray radiation is proportional to that energy.

The sievert unit is used in the report of the effective dose. The sievert unit, in the context of CT scans, does not correspond to the actual radiation dose that the scanned body part absorbs but to another radiation dose of another scenario, the whole body absorbing the other radiation dose and the other radiation dose being of a magnitude, estimated to have the same probability to induce cancer as the CT scan. Thus, as is shown in the table above, the actual radiation that is absorbed by a scanned body part is often much larger than the effective dose suggests. A specific measure, termed the computed tomography dose index (CTDI), is commonly used as an estimate of the radiation absorbed dose for tissue within the scan region, and is automatically computed by medical CT scanners.

The equivalent dose is the effective dose of a case, in which the whole body would actually absorb the same radiation dose, and the sievert unit is used in its report. In the case of non-uniform radiation, or radiation given to only part of the body, which is common for CT examinations, using the local equivalent dose alone would overstate the biological risks to the entire organism.

Effects of radiation

Most adverse health effects of radiation exposure may be grouped in two general categories:

  • deterministic effects (harmful tissue reactions) due in large part to the killing/malfunction of cells following high doses;
  • stochastic effects, i.e., cancer and heritable effects involving either cancer development in exposed individuals owing to mutation of somatic cells or heritable disease in their offspring owing to mutation of reproductive (germ) cells.

The added lifetime risk of developing cancer by a single abdominal CT of 8 mSv is estimated to be 0.05%, or 1 one in 2,000.

Because of increased susceptibility of fetuses to radiation exposure, the radiation dosage of a CT scan is an important consideration in the choice of medical imaging in pregnancy.

Excess doses

In October, 2009, the US Food and Drug Administration (FDA) initiated an investigation of brain perfusion CT (PCT) scans, based on radiation burns caused by incorrect settings at one particular facility for this particular type of CT scan. Over 200 patients were exposed to radiation at approximately eight times the expected dose for an 18-month period; over 40% of them lost patches of hair. This event prompted a call for increased CT quality assurance programs. It was noted that "while unnecessary radiation exposure should be avoided, a medically needed CT scan obtained with appropriate acquisition parameter has benefits that outweigh the radiation risks." Similar problems have been reported at other centers. These incidents are believed to be due to human error.

Procedure

CT scan procedure varies according to the type of the study and the organ being imaged. The patient lies on the CT table and the centering of the table is done according to the body part. The IV line is established in case of contrast-enhanced CT. After selecting proper and rate of contrast from the pressure injector, the scout is taken to localize and plan the scan. Once the plan is selected, the contrast is given. The raw data is processed according to the study and proper windowing is done to make scans easy to diagnose.

Preparation

Patient preparation may vary according to the type of scan. The general patient preparation includes.

  1. Signing the informed consent.
  2. Removal of metallic objects and jewelry from the region of interest.
  3. Changing to the hospital gown according to hospital protocol.
  4. Checking of kidney function, especially creatinine and urea levels (in case of CECT).

Mechanism

CT scanner with cover removed to show internal components. Legend:
T: X-ray tube
D: X-ray detectors
X: X-ray beam
R: Gantry rotation
Left image is a sinogram which is a graphic representation of the raw data obtained from a CT scan. At right is an image sample derived from the raw data.

Computed tomography operates by using an X-ray generator that rotates around the object; X-ray detectors are positioned on the opposite side of the circle from the X-ray source. As the X-rays pass through the patient, they are attenuated differently by various tissues according to the tissue density. A visual representation of the raw data obtained is called a sinogram, yet it is not sufficient for interpretation. Once the scan data has been acquired, the data must be processed using a form of tomographic reconstruction, which produces a series of cross-sectional images. These cross-sectional images are made up of small units of pixels or voxels.

Pixels in an image obtained by CT scanning are displayed in terms of relative radiodensity. The pixel itself is displayed according to the mean attenuation of the tissue(s) that it corresponds to on a scale from +3,071 (most attenuating) to −1,024 (least attenuating) on the Hounsfield scale. A pixel is a two dimensional unit based on the matrix size and the field of view. When the CT slice thickness is also factored in, the unit is known as a voxel, which is a three-dimensional unit.

Water has an attenuation of 0 Hounsfield units (HU), while air is −1,000 HU, cancellous bone is typically +400 HU, and cranial bone can reach 2,000 HU or more (os temporale) and can cause artifacts. The attenuation of metallic implants depends on the atomic number of the element used: Titanium usually has an amount of +1000 HU, iron steel can completely extinguish the X-ray and is, therefore, responsible for well-known line-artifacts in computed tomograms. Artifacts are caused by abrupt transitions between low- and high-density materials, which results in data values that exceed the dynamic range of the processing electronics. Two-dimensional CT images are conventionally rendered so that the view is as though looking up at it from the patient's feet. Hence, the left side of the image is to the patient's right and vice versa, while anterior in the image also is the patient's anterior and vice versa. This left-right interchange corresponds to the view that physicians generally have in reality when positioned in front of patients.

Initially, the images generated in CT scans were in the transverse (axial) anatomical plane, perpendicular to the long axis of the body. Modern scanners allow the scan data to be reformatted as images in other planes. Digital geometry processing can generate a three-dimensional image of an object inside the body from a series of two-dimensional radiographic images taken by rotation around a fixed axis. These cross-sectional images are widely used for medical diagnosis and therapy.

Contrast

Contrast media used for X-ray CT, as well as for plain film X-ray, are called radiocontrasts. Radiocontrasts for CT are, in general, iodine-based.[209] This is useful to highlight structures such as blood vessels that otherwise would be difficult to delineate from their surroundings. Using contrast material can also help to obtain functional information about tissues. Often, images are taken both with and without radiocontrast.[210]

History

The history of X-ray computed tomography goes back to at least 1917 with the mathematical theory of the Radon transform. In October 1963, William H. Oldendorf received a U.S. patent for a "radiant energy apparatus for investigating selected areas of interior objects obscured by dense material". The first commercially viable CT scanner was invented by Godfrey Hounsfield in 1972.

It is often claimed that revenues from the sales of The Beatles' records in the 1960s helped fund the development of the first CT scanner at EMI. The first production X-ray CT machines were in fact called EMI scanners.

Etymology

The word tomography is derived from the Greek tome 'slice' and graphein 'to write'. Computed tomography was originally known as the "EMI scan" as it was developed in the early 1970s at a research branch of EMI, a company best known today for its music and recording business. It was later known as computed axial tomography (CAT or CT scan) and body section röntgenography.

The term CAT scan is no longer in technical use because current CT scans enable for multiplanar reconstructions. This makes CT scan the most appropriate term, which is used by radiologists in common vernacular as well as in textbooks and scientific papers.

In Medical Subject Headings (MeSH), computed axial tomography was used from 1977 to 1979, but the current indexing explicitly includes X-ray in the title.

The term sinogram was introduced by Paul Edholm and Bertil Jacobson in 1975.

Society and culture

Number of CT scanners by country (OECD)
as of 2017
(per million population)
Country Value
 Japan 111.49
 Australia 64.35
 Iceland 43.68
 United States 42.64
 Denmark 39.72
  Switzerland 39.28
 Latvia 39.13
 South Korea 38.18
 Germany 35.13
 Italy 34.71
 Greece 34.22
 Austria 28.64
 Finland 24.51
 Chile 24.27
 Lithuania 23.33
 Ireland 19.14
 Spain 18.59
 Estonia 18.22
 France 17.36
 Slovakia 17.28
 Poland 16.88
 Luxembourg 16.77
 New Zealand 16.69
 Czech Republic 15.76
 Canada 15.28
 Slovenia 15.00
 Turkey 14.77
 Netherlands 13.48
 Russia 13.00
 Israel 9.53
 Hungary 9.19
 Mexico 5.83
 Colombia 1.24

Campaigns

In response to increased concern by the public and the ongoing progress of best practices, the Alliance for Radiation Safety in Pediatric Imaging was formed within the Society for Pediatric Radiology. In concert with the American Society of Radiologic Technologists, the American College of Radiology and the American Association of Physicists in Medicine, the Society for Pediatric Radiology developed and launched the Image Gently Campaign which is designed to maintain high-quality imaging studies while using the lowest doses and best radiation safety practices available on pediatric patients. This initiative has been endorsed and applied by a growing list of various professional medical organizations around the world and has received support and assistance from companies that manufacture equipment used in Radiology.

Following upon the success of the Image Gently campaign, the American College of Radiology, the Radiological Society of North America, the American Association of Physicists in Medicine and the American Society of Radiologic Technologists have launched a similar campaign to address this issue in the adult population called Image Wisely.

The World Health Organization and International Atomic Energy Agency (IAEA) of the United Nations have also been working in this area and have ongoing projects designed to broaden best practices and lower patient radiation dose.

Prevalence

Use of CT has increased dramatically over the last two decades. An estimated 72 million scans were performed in the United States in 2007, accounting for close to half of the total per-capita dose rate from radiologic and nuclear medicine procedures. Of the CT scans, six to eleven percent are done in children, an increase of seven to eightfold from 1980. Similar increases have been seen in Europe and Asia. In Calgary, Canada, 12.1% of people who present to the emergency with an urgent complaint received a CT scan, most commonly either of the head or of the abdomen. The percentage who received CT, however, varied markedly by the emergency physician who saw them from 1.8% to 25%. In the emergency department in the United States, CT or MRI imaging is done in 15% of people who present with injuries as of 2007 (up from 6% in 1998).

The increased use of CT scans has been the greatest in two fields: screening of adults (screening CT of the lung in smokers, virtual colonoscopy, CT cardiac screening, and whole-body CT in asymptomatic patients) and CT imaging of children. Shortening of the scanning time to around 1 second, eliminating the strict need for the subject to remain still or be sedated, is one of the main reasons for the large increase in the pediatric population (especially for the diagnosis of appendicitis). As of 2007, in the United States a proportion of CT scans are performed unnecessarily. Some estimates place this number at 30%. There are a number of reasons for this including: legal concerns, financial incentives, and desire by the public. For example, some healthy people avidly pay to receive full-body CT scans as screening. In that case, it is not at all clear that the benefits outweigh the risks and costs. Deciding whether and how to treat incidentalomas is complex, radiation exposure is not negligible, and the money for the scans involves opportunity cost.

Manufacturers

Major manufacturers of CT scanning devices and equipment are:

Research

Photon-counting computed tomography is a CT technique currently under development. Typical CT scanners use energy integrating detectors; photons are measured as a voltage on a capacitor which is proportional to the X-rays detected. However, this technique is susceptible to noise and other factors which can affect the linearity of the voltage to X-ray intensity relationship. Photon counting detectors (PCDs) are still affected by noise but it does not change the measured counts of photons. PCDs have several potential advantages, including improving signal (and contrast) to noise ratios, reducing doses, improving spatial resolution, and through use of several energies, distinguishing multiple contrast agents. PCDs have only recently become feasible in CT scanners due to improvements in detector technologies that can cope with the volume and rate of data required. As of February 2016, photon counting CT is in use at three sites. Some early research has found the dose reduction potential of photon counting CT for breast imaging to be very promising. In view of recent findings of high cumulative doses to patients from recurrent CT scans, there has been a push for scanning technologies and techniques that reduce ionising radiation doses to patients to sub-milliSievert (sub-mSv in the literature) levels during the CT scan process, a goal that has been lingering.

Thursday, December 18, 2025

Apocalypticism

Apocalypticism is the religious belief that the end of the world is imminent, even within one's own lifetime. This belief is usually accompanied by the idea that civilization will soon come to a tumultuous end due to some sort of catastrophic global event.

Apocalypticism is one aspect of eschatology in certain religions, the part of theology concerned with the final events of human history, or the ultimate destiny of humanity (societal collapse, human extinction, and so on).

Religious apocalypticism

Religious views and movements often focus on cryptic revelations about a sudden, dramatic, and cataclysmic intervention of God in human history; the judgment of humankind; the salvation of the faithful elect; and the eventual rule of the elect with God in Heaven and/or upon a renewed Earth. Arising originally in Zoroastrianism, apocalypticism was developed more fully in the eschatological speculations of Judaism, Christianity, and Islam (the Abrahamic religions). Religious apocalypticism often involves themes such as God's judgment, salvation of the faithful, and the eventual establishment of a renewed world.

Esoteric aspects

Apocalypticism is often conjoined with the belief that esoteric knowledge will likely be revealed in a major confrontation between good and evil forces, destined to change the course of historyApocalypses can be viewed as good, evil, ambiguous or neutral, depending on the particular religion or belief system promoting them. However, it is not exclusively a religious idea and there are end times or transitional scenarios based in modern science, technology, political discourse, and conspiracy theories.

Abrahamic religions

Christianity

God Inviting Christ to Sit on the Throne at His Right Hand, painting by Pieter de Grebber (1645). The Holy Spirit is visible as a dove at the top of the image.

Most scholars participating in the third quest for the historical Jesus believe that Jesus was an eschatological prophet who believed the "Kingdom of God" was coming within his own lifetime or within the lifetime of his contemporaries. Simultaneously, some of these scholars tend to see Jesus's predictions as mistaken although some others view it from the perspective of the conditional nature of judgement prophecy. Dale Allison draws parallels from the history of religions and the historical Jesus showing that contingent eschatology is often used as a dissonance reduction strategy when certain expectations or prophecies fail to materialize. A number of interpretations of the term "Kingdom of God" have thus appeared in its eschatological context, e.g., apocalyptic, realized or inaugurated eschatologies, yet no consensus has emerged among scholars. The major focus for Jesus's eschatological teachings in the Gospels is the Olivet Discourse in Mark 13, where "Jesus speaks as if Peter, James, and John will personally experience the parousia." In the Gospel of Matthew, the major focus for Jesus's eschatological teachings is in Matthew 24:36–51. Many scholars point to Jesus' association with John the Baptist as confirmation for his apocalyptic intentions.

Malherbe writes that Paul the Apostle includes himself among those who will live to see the parousia in 1 Thessalonians 4:13–18 although this is disputed by J. Andrew Doole. In contrast, other passages in the Pauline epistles are seen as describing the nearness of the parousia whether or not Paul himself will live to see it. On the other hand, N.T. Wright observes that Paul's eschatology develops in his later epistles, after turbulent experiences in Ephesus, that he would probably not see the Second Coming in his lifetime. Wright argues that this shift was due to perspective and not belief. Nevertheless, Philippians 4:5, where Paul states that "the Lord is near" suggests that he maintained the return of Jesus was imminent, even if he reckoned he may die before it happening.

This view, generally known as "consistent eschatology", was influential during the early to the mid-20th century and continues to be influential today in proposed portraits of the historical Jesus. However, C. H. Dodd and others have insisted on a "realized eschatology", based on the belief that the ministry of Jesus had fulfilled prophetic hopes. Many conservative scholars have adopted the paradoxical position that the "Kingdom of God" describes a kingdom that is both "present" and "still to come", claiming Pauline eschatology as support. While the notion of an apocalyptic Jesus remains a mainstream view among scholars, it has been challenged by proponents of other portraits. Scholars of the Jesus Seminar have rejected the historicity of Jesus' apocalyptic expectations, arguing that the evidence for it in the Gospels is largely tied to the discourses of Jesus on the "Son of Man", which they do not consider to be historical; they further attribute the apocalyptic expectations of the early Church as emerging from their belief in the resurrection of Jesus, where resurrection was tied to eschatological expectations in Jewish theology. Some argued that the earlier traditions in the Q Source and Gospel of Thomas showed that apocalyptic eschatology was not present in earlier layers of the Jesus tradition. The approach by the Jesus Seminar is not short of many critics.

The Last Judgment, Eastern Orthodox icon on the Second Coming of Christ by Georgios Klontzas (c. 1580–1608), Hellenic Institute of Venice, Italy

Some scholars argue the apocalyptic ideas in the early Christian gospels are not to be viewed as a literal timetable or prediction of the end times, but as relating to the destruction of the Jewish Temple in 70 CE. They argue that for ancient Jews, the Temple was treated as a symbolic or even literal meeting point between Heaven and Earth, thereby its destruction would have wider cosmic consequences. Similarly, it is argued that apocalyptic language was used throughout the Hebrew Bible to describe political and historical catastrophes, and not the end of the world. Thus, scholars such as R.T. France and N.T. Wright argue that the Gospels use apocalyptic language borrowed from the Old Testament to describe the destruction of the Temple in 70 AD, and passages such as Mark 13:26 concerning the "coming" of the Son of Man (as described in Daniel 7) are not about the Second Coming, but rather about the vindication and enthronement of the Son of Man at the Right Hand of God, where he is bestowed new authority with the Temple's destruction. Similarly, these and other scholars argue for a "now and not yet" approach to the Kingdom of God in the Gospels and Pauline epistles.

Various Christian eschatological systems have developed among different Christian denominations throughout the history of Christianity, providing different frameworks for understanding the timing and nature of apocalyptic predictions. Some like dispensational premillennialism tend more toward an apocalyptic vision, while others like postmillennialism and amillennialism, while teaching that the end of the world could come at any moment, tend to focus on the present life and contend that one should not attempt to predict when the end should come, though there have been exceptions such as postmillennialist Jonathan Edwards, who estimated that the end times would occur around the year 2000.

Year 1000

Western Europe, the Holy Roman Empire, Kievan Rus', and the Byzantine Empire in the Middle Ages (year 1000)

There is no current consensus among historians about widespread apocalypticism in the year 1000. Richard Landes, Johannes Fried, and others think there were widespread expectations, both hopes and fears. The notion of a widespread expectation of the year 1000 first appeared during the Renaissance. Historians denounced it as a myth around 1900.

There are many recorded instances of both fascination with the advent of the year 1000, and examples of apocalyptic excitement leading up to the year 1000, the most explicit and revealing examples provided by Rodulfus Glaber.

Specifically in Western Europe, during the year 1000, Christian philosophers held many debates on when Jesus was actually born and the debates continue to today. This caused confusion between the common people on whether or not the apocalypse would occur at a certain time. Because both literate and illiterate people commonly accepted this idea of the apocalypse, they could only accept what they heard from religious leaders on when the disastrous event would occur. Religious leader Abbo of Fleury believed that Jesus was born 21 years after year 1 which was commonly accepted by close circles of his followers. Abbot Heriger of Lobbes, argued that the birth of Jesus occurred not during the year 1 but rather during the 42nd year of the common era. Eventually many scholars came to accept that the apocalypse would occur sometime between 979–1042.[69] Under the influence of the Sibylline Oracles and figures such as Otto III and Abbot Adso of Montier-en-Der many felt that the apocalypse would soon occur.

Some historians, such as Richard Landes, think there were extensive apocalyptic expectations at the approach of the year 1000 and again at the approach of 1000 anno passionis (1033). Alessandro Barbero, on the other hand, claims that the fear of the year 1000 is a myth and there was no widespread apocalyptic sentiment. As evidence, he cites that on 31 December 999 Pope Sylvester II granted certain privileges and guarantees to the Abbey of Fulda, without any indication that either the pope or the abbot believed that the world was soon to end. Similarly, Barbero points out a document from 3 October 999 in which Otto III grants future concessions to Farfa Abbey. Another document in 999 shows two brothers taking a 29-year loan on lands of the abbey of San Marciano in Tortona, suggesting that even common people did not believe the world was ending. On the other hand, the fact that Otto III visited the tomb of Charlemagne, the emperor of the year 6000 (Annus Mundi) on Pentecost of the year 1000 suggests that even the man who appointed Sylvester pope, had his own views on the matter.

Crusades

Peter the Hermit preaching the Crusade, Gustave Doré

From the outset, the Crusades were filled with apocalyptic expectation and prophecy, beginning with the preachings of figures like Peter the Hermit to inspire knights, nobles, and commoners to march to the Holy Land and take Jerusalem. Other leading figures of the People's Crusade, such as Volkmar and Emicho, were so filled with zealotry that they slaughtered Jewish inhabitants along their journey to the Levant. Emicho claimed that Christ appeared and ordered him to fulfill apocalyptic prophecy by marching on Constantinople, seizing Jerusalem, triggering the Second Coming, and beginning the end times struggle against the Antichrist. Leaders of the following Prince's Crusade, such as Raymond of Aguilers, understood their conquest of Jerusalem as being a victory of Christendom over the Saracen "pagans" and as a sign of the oncoming Apocalypse and Second Coming.

Christian chroniclers, such as Matthew of Edessa, illustrated the Crusades in an apocalyptic framework, connecting the Frankish rule with the fourth kingdom in Daniel's prophecy. Many other European writers emphasized the bloodiness during the massacre of Jerusalem as fulfilling the violent prophecies of Revelation. Muslim scholars reacted to the success of the First Crusade with less apocalyptic interpretation, instead perceiving it as more of a tragedy of history. Joachim of Fiore and other millenarian thinkers perceived saw the Crusades as temporary, foreseeing the voluntarily conversion of the Islamic world over time.

Fifth Monarchy Men

The Fifth Monarchists or Fifth Monarchy Men were an extreme Puritan sect active from 1649 to 1660 during the Interregnum, following the English Civil Wars of the 17th century. They took their name from a prophecy in the Book of Daniel that four ancient monarchies (Babylonian, Persian, Macedonian, and Roman) would precede the kingdom of Christ. They also referred to the year 1666 and its relationship to the biblical Number of the Beast indicating the end of earthly rule by carnal human beings. They were one of a number of nonconformist dissenting groups that emerged around this time.

Isaac Newton and the end of the world in 2060

In late February and early March 2003, a large amount of media attention circulated around the globe regarding largely unknown and unpublished documents, evidently written by Isaac Newton, indicating that he believed the world would end no earlier than 2060. The story garnered vast amounts of public interest and found its way onto the front page of several widely distributed newspapers, including the UK's The Daily Telegraph, Canada's National Post, and Israel's Maariv and Yediot Aharonot, and was also featured in an article in the scientific journal Canadian Journal of History.

The two documents detailing this prediction are currently housed within the Jewish National and University Library in Jerusalem. Both were believed to be written toward the end of Newton's life, circa 1705, a time frame most notably established by the use of the full title of Sir Isaac Newton within portions of the documents.

These documents do not appear to have been written with the intention of publication and Newton expressed a strong personal dislike for individuals who provided specific dates for the Apocalypse purely for sensational value. Furthermore, he at no time provides a specific date for the end of the world in either of these documents. See Isaac Newton's religious views for more details.

The first document, part of the Yahuda collection, is a small letter slip, on the back of which is written haphazardly in Newton's hand:

Prop. 1. The 2300 prophetick days did not commence before the rise of the little horn of the He Goat.

2 Those day [sic] did not commence a[f]ter the destruction of Jerusalem & ye Temple by the Romans A.[D.] 70.

3 The time times & half a time did not commence before the year 800 in wch the Popes supremacy commenced

4 They did not commence after the re[ig]ne of Gregory the 7th. 1084

5 The 1290 days did not commence b[e]fore the year 842.

6 They did not commence after the reigne of Pope Greg. 7th. 1084

7 The diffence [sic] between the 1290 & 1335 days are a parts of the seven weeks.

Therefore the 2300 years do not end before ye year 2132 nor after 2370. The time times & half time do n[o]t end before 2060 nor after [2344] The 1290 days do not begin [this should read: end] before 2090 nor after 1374 [sic; Newton probably means 2374]

The second reference to the 2060 prediction can be found in a folio, in which Newton writes:

So then the time times & half a time are 42 months or 1260 days or three years & an half, recconing twelve months to a yeare & 30 days to a month as was done in the Calendar of the primitive year. And the days of short lived Beasts being put for the years of lived [sic for "long lived"] kingdoms, the period of 1260 days, if dated from the complete conquest of the three kings A.C. 800, will end A.C. 2060. It may end later, but I see no reason for its ending sooner. This I mention not to assert when the time of the end shall be, but to put a stop to the rash conjectures of fancifull men who are frequently predicting the time of the end, & by doing so bring the sacred prophesies into discredit as often as their predictions fail. Christ comes as a thief in the night, & it is not for us to know the times & seasons wch God hath put into his own breast.

Newton may not have been referring to the post 2060 event as a destructive act resulting in the annihilation of the globe and its inhabitants, but rather one in which he believed the world, as he saw it, was to be replaced with a new one based upon a transition to an era of divinely inspired peace. In Christian and Islamic theology this concept is often referred to as The Second Coming of Jesus Christ and the establishment of the Kingdom of God on Earth. In a separate manuscript, Isaac Newton paraphrases Revelation 21 and 22 and relates the post 2060 events by writing:

A new heaven & new earth. New Jerusalem comes down from heaven prepared as a Bride adorned for her husband. The marriage supper. God dwells with men wipes away all tears from their eyes, gives them of ye fountain of living water & creates all thin things new saying, It is done. The glory & felicity of the New Jerusalem is represented by a building of Gold & Gemms enlightened by the glory of God & ye Lamb & watered by ye river of Paradise on ye banks of which grows the tree of life. Into this city the kings of the earth do bring their glory & that of the nations & the saints reign for ever & ever.

Millerism and The Great Disappointment

Preacher William Miller, who led his followers to the Great Disappointment of 1844

The Great Disappointment in the Millerite movement was the reaction that followed Baptist preacher William Miller's proclamations that Jesus Christ would return to the Earth by 1844, what he called the Advent. His study of the Daniel 8 prophecy during the Second Great Awakening led him to the conclusion that Daniel's "cleansing of the sanctuary" was cleansing of the world from sin when Christ would come, and he and many others prepared, but October 22, 1844 came and they were disappointed.

These events paved the way for the Adventists who formed the Seventh-day Adventist Church. They contended that what had happened on October 22 was not Jesus's return, as Miller had thought, but the start of Jesus's final work of atonement, the cleansing in the heavenly sanctuary, leading up to the Second Coming of Christ.

Seventh-day Adventism

The ideological descendants of the Millerites are the Seventh-day Adventists. They are a Protestant Christian denomination which is distinguished by its observance of Saturday, the seventh day of the week in both the Jewish calendar, and calendars in use in the Christian world (such as the Gregorian calendar), as the Sabbath, and its emphasis on the imminent Second Coming (advent) of Jesus Christ. The denomination grew out of the Millerite movement in the United States during the mid-19th century and it was formally established in 1863. Among its founders was Ellen G. White, whose extensive writings are still held in high regard by the adherents of the Seventh-day Adventist Church.

Mormonism

Like many 19th-century American Restorationist Christian denominations, the Mormon tradition teaches that adherents are living shortly before the Second Coming of Christ. The term "latter days" is used in the official names of several Mormon churches, including the Church of Jesus Christ of Latter-day Saints. LDS president Wilford Woodruff preached multiple times that many then-living adherents "would not taste death" before witnessing the return of Christ. According to LDS Church teachings, the true gospel will be taught in all parts of the world prior to the Second Coming. Church members believe that there will be increasingly severe wars, earthquakes, hurricanes, and other man-made and natural disasters prior to the Second Coming.

Jehovah's Witnesses

The eschatology of Jehovah's Witnesses is central to their faith and religious beliefs. They believe that Jesus Christ has been ruling in heaven as king since 1914 (a date they believe was prophesied in Scripture), and that after that time a period of cleansing occurred, resulting in God's selection of the Bible Students associated with Charles Taze Russell to be his people in 1919. They also believe the destruction of those who reject their message and thus willfully refuse to obey God will shortly take place at Armageddon, ensuring that the beginning of the new earthly society will be composed of willing subjects of that kingdom.

The group's doctrines surrounding 1914 are the legacy of a series of emphatic claims regarding the years 1799, 1874, 1878, 1914, 1918 and 1925 made in the Watch Tower Society's publications between 1879 and 1924. Claims about the significance of those years, including the presence of Jesus Christ, the beginning of the "last days", the destruction of worldly governments and the earthly resurrection of Jewish patriarchs, were successively abandoned. In 1922 the society's principal journal, Watch Tower, described its chronology as "no stronger than its weakest link", but also claimed the chronological relationships to be "of divine origin and divinely corroborated...in a class by itself, absolutely and unqualifiedly correct" and "indisputable facts", while repudiation of Russell's teachings was described as "equivalent to a repudiation of the Lord".

The Watch Tower Society has stated that its early leaders promoted "incomplete, even inaccurate concepts". The Governing Body of Jehovah's Witnesses says that, unlike Old Testament prophets, its interpretations of the Bible are not inspired or infallibleWitness publications say that Bible prophecies can be fully understood only after their fulfillment, citing examples of biblical figures who did not understand the meaning of prophecies they received. Watch Tower publications often cite Proverbs 4:18, "The path of the righteous ones is like the bright light that is getting lighter and lighter until the day is firmly established" (NWT) to support their view that there would be an increase in knowledge during "the time of the end", as mentioned in Daniel 12:4. Jehovah's Witnesses state that this increase in knowledge needs adjustments. Watch Tower publications also say that unfulfilled expectations are partly due to eagerness for God's Kingdom and that they do not call their core beliefs into question.

Christadelphians

For Christadelphians, Armageddon marks the "great climax of history when the nations would be gathered together "into a place called in the Hebrew tongue Armageddon", and the judgment on them would herald the setting up of the Kingdom of God." After this Christadelphians believe that Jesus will return to the earth in person to set up the Kingdom of God in fulfilment of the promises made to Abraham and David. This includes the belief that the coming Kingdom will be the restoration of God's first Kingdom of Israel, which was under David and Solomon. For Christadelphians, this is the focal point of the gospel taught by Jesus and the apostles.

Realized eschatology

Realized eschatology is a Christian eschatological theory popularized by J. A. T. Robinson, Joachim Jeremias, Ethelbert Stauffer (1902–1979), and C. H. Dodd (1884–1973), that holds that the eschatological passages in the New Testament do not refer to the future, but instead refer to the ministry of Jesus and his lasting legacy. Eschatology is therefore not the end of the world but its rebirth instituted by Jesus and continued by his disciples, a historical (rather than transhistorical) phenomenon. Those holding this view generally dismiss end times theories, believing them to be irrelevant; they hold that what Jesus said and did, and told his disciples to do likewise, are of greater significance than any messianic expectations.

Harold Camping

American Christian radio host Harold Camping stated that the Rapture and Judgment Day would take place on May 21, 2011, and that the end of the world would take place five months later on October 21, 2011, based on adding the 153 fish of John 20 to May 21. The Rapture, as indicated in 1 Thessalonians 4:17 (harpagēsometha 'we shall be raptured/taken up', rapture derivable from the Latin translation rapiemur) is the taking up of believers to a meeting in the air with the Lord Jesus, but for Camping the rapture was also associated with the End of the World.

Camping, who was then president of the Family Radio Christian network, claimed the Bible as his source and said May 21 would be the date of the Rapture and the day of judgment "beyond the shadow of a doubt". Camping suggested that it would occur at 6 pm local time, with the Rapture sweeping the globe time zone by time zone, while some of his supporters claimed that around 200 million people (approximately 3% of the world's population) would be raptured. Camping had previously claimed that the Rapture would occur in September 1994.

The vast majority of Christian groups, including most Protestant and Catholic believers, did not accept Camping's predictions; some explicitly rejected them, citing Bible passages including the words of Jesus stating "about that day or hour no one knows" (Matthew 24:36). An interview with a group of church leaders noted that all of them had scheduled church services as usual for Sunday, May 22.

Following the failure of the prediction, media attention shifted to the response from Camping and his followers. On May 23, Camping stated that May 21 had been a "spiritual" day of judgment, and that the physical Rapture would occur on October 21, 2011, simultaneously with the destruction of the universe by God. However, on October 16, Camping admitted to an interviewer that he did not know when the end would come.

In March 2012, Camping "humbly acknowledged" in a letter to Family Radio listeners that he had been mistaken, that the attempt to predict a date was "sinful", and that critics had been right in pointing to the scriptural text "of that day and hour knoweth no man". He added that he was searching the Bible "even more fervently [...] not to find dates, but to be more faithful in our understanding."

David Meade

David Meade is the pen name of an American end-times conspiracy theorist and book author who has yet to disclose his real name. Meade, who describes himself as a "Christian numerologist", claims to have attended the University of Louisville, where he "studied astronomy, among other subjects", but, because his real name is unknown, The Washington Post reported that the university could not confirm whether he had ever been a student there. He is also a writer, researcher and investigator who has written and self-published at least 13 books. He made appearances and interviews on Coast to Coast AM, The Washington Post, Glenn Beck Program, YouTube with pastor Paul Begley, and the Daily Express. He is best known for making numerous predictions, which have passed, regarding the end times, including that a hidden planet named Nibiru (sometimes known as Planet X) would destroy the Earth.

Meade predicted that planet Nibiru would collide with Earth on September 23, 2017, destroying it. After his prediction failed, he revised the apocalypse to October, where he stated that the seven-year tribulation would possibly start followed by a millennium of peace. In 2018, Meade again made several predictions for that year, for instance, that North Korea becoming a superpower in March 2018 and that Nibiru would destroy the Earth in spring. Meade announced that the apocalypse would begin in March 2018, but he did not predict the exact date. After March 2018 passed, he moved the apocalypse to April 23, 2018, in which he also predicted the Sun, Moon, Jupiter, and Virgo will signal the rapture, and that Nibiru would destroy the Earth that day. However, before that date he said that reports that he predicted the end on 23 April were "fake news", but that the rapture—but not the end of the world—would take place on an unspecified date between May and December 2018.

Branch Davidians

The Branch Davidians (also known as The Branch) are a religious group that originated in 1955 from a schism among the Shepherd's Rod/Davidians. The Branch group was initially led by Benjamin Roden. Branch Davidians are most associated with the Waco siege of 1993, which involved David Koresh. There is documented evidence (FBI negotiation transcripts between Kathryn Shroeder and Steve Schneider with interjections from Koresh himself) that David Koresh and his followers did not call themselves Branch Davidians. In addition, David Koresh, through forgery, stole the identity of the Branch Davidian Seventh-day Adventists for the purpose of obtaining the Mount Carmel Center property. The doctrinal beliefs of the Branch Davidians differ on teachings such as the Holy Spirit and his nature, and the feast days and their requirements. Both groups have disputed the relevance of the other's spiritual authority based on the proceedings following Victor Houteff's death. From its inception in 1930, the Davidians/Shepherd's Rod group believed themselves to be living in a time when biblical prophecies of a final divine judgment were coming to pass as a prelude to Christ's Second Coming.

In the late 1980s, Koresh and his followers abandoned many Branch Davidian teachings. Koresh became the group's self-proclaimed final prophet. "Koreshians" were the majority resulting from the schism among the Branch Davidians, but some of the Branch Davidians did not join Koresh's group and instead gathered around George Roden or became independent. Following a series of violent shootouts between Roden's and Koresh's group, the Mount Carmel compound was eventually taken over by the "Koreshians". In 1993, the ATF and Texas Army National Guard raided one of the properties belonging to a new religious movement centered around David Koresh that evolved from the Branch Davidians for suspected weapons violations. It is unknown who shot first, but the ATF surrounded and tried to invade the home of the Branch Davidians. This raid resulted in a two-hour firefight in which four ATF agents were killed; this was followed by a standoff with government agents that lasted for 51 days. The siege ended in a fire that engulfed the Mount Carmel compound which led to the deaths of 76 Branch Davidians inside.

Islam

Islamic eschatology is the aspect of Islamic theology concerning ideas of life after death, matters of the soul, and the "Day of Judgement," known as Yawm al-Qiyāmah (Arabic: يوم القيامة, IPA: [jawmu‿l.qijaːma], "the Day of Resurrection") or Yawm ad-Dīn (يوم الدين, Arabic pronunciation: [jawmu‿d.diːn], "the Day of Judgment"). The Day of Judgement is characterized by the annihilation of all life, which will then be followed by the resurrection of the dead and judgment by God. It is not specified when al-Qiyamah will happen, but according to prophecy elaborated by hadith literature, there are major and minor signs that will foretell its coming. Multiple verses in the Qur'an mention the Last Judgment.

The main subject of Surat al-Qiyama is the resurrection. The Great Tribulation is described in the hadith and commentaries of the ulama, including al-Ghazali, Ibn Kathir, Ibn Majah, Muhammad al-Bukhari, and Ibn Khuzaymah. The Day of Judgment is also known as the Day of Reckoning, the Last Day, and the Hour (al-sā'ah).

Unlike the Quran, the hadith contains several events, happening before the Day of Judgment, which are described as several minor signs and twelve major signs. During this period, terrible corruption and chaos would rule the earth, caused by the Masih ad-Dajjal (the Antichrist in Islam), then Jesus will appear, defeating the Dajjal and establish a period of peace, liberating the world from cruelty. These events will be followed by a time of serenity when people live according to religious values.

Similarly to other Abrahamic religions, Islam teaches that there will be a resurrection of the dead that will be followed by a final tribulation and eternal division of the righteous and wicked. Islamic apocalyptic literature describing Armageddon is often known as fitna, Al-Malhama Al-Kubra (The Great Massacre) or ghaybah in Shī'a Islam. The righteous are rewarded with the pleasures of Jannah (Paradise), while the unrighteous are punished in Jahannam (Hell).

Judaism

Moses of Crete, a rabbi in the 5th century, claimed to be the Jewish Messiah and promised to lead the people, like the ancient Moses, through a parted sea back to Palestine. His followers left their possessions and waited for the promised day, when, at his command, many cast themselves into the sea, some finding death, others being rescued by sailors.

Ancient Norse religion

Title page of a late manuscript of the Prose Edda written by Snorri Sturluson (13th century), showing the Ancient Norse Gods Odin, Heimdallr, Sleipnir, and other figures from Norse mythology

Ragnarök is an important eschatological event in the Ancient Norse religion and its mythology, and has been the subject of scholarly discourse and theory in the history of Germanic studies and is attested primarily in the Poetic Edda, compiled in the 13th century from earlier traditional sources and the Prose Edda, composed in the 13th century by the Icelandic scholar, lawspeaker, and historian Snorri Sturluson. In the Prose Edda and in a single poem in the Poetic Edda, the event is referred to as Ragnarök or Ragnarøkkr (Old Norse for 'Fate of the Gods' / 'Twilight of the Gods', respectively), a usage popularised by 19th-century composer Richard Wagner with the title of the last of his Der Ring des Nibelungen operas, Götterdämmerung (1876), which is "Twilight of the Gods" in German. There are various theories and interpretations of Ragnarök.

Cyclic time and Hoddmímis holt

Rudolf Simek theorizes that the survival of Líf and Lífþrasir at the end of Ragnarök is "a case of reduplication of the anthropogeny, understandable from the cyclic nature of the Eddic eschatology". Simek says that Hoddmímis holt "should not be understood literally as a wood or even a forest in which the two keep themselves hidden, but rather as an alternative name for the world-tree Yggdrasill. Thus, the creation of mankind from tree trunks (Askr, Embla) is repeated after the Ragnarök as well". Simek says that in Germanic regions, the concept of mankind originating from trees is ancient, and additionally points out legendary parallels in a Bavarian legend of a shepherd who lives inside a tree, whose descendants repopulate the land after life there has been wiped out by plague (citing a retelling by F. R. Schröder). In addition, Simek points to an Old Norse parallel in the figure of Örvar-Oddr, "who is rejuvenated after living as a tree-man (Ǫrvar-Odds saga 24–27)".

Muspille, Heliand, and Christianity

Theories have been proposed about the relation between Ragnarök and the 9th-century Old High German epic poem Muspilli about the Christian Last Judgment, where the word Muspille appears, and the 9th-century Old Saxon epic poem Heliand about the life of Christ, where various other forms of the word appear. In both sources, the word is used to signify the end of the world through fire. Old Norse forms of the term also appear throughout accounts of Ragnarök, where the world is also consumed in flames, and, though various theories exist about the meaning and origins of the term, its etymology has not been solved.

Proto-Indo-European basis

Parallels have been pointed out between the Ragnarök of Norse religion and the beliefs of other related Proto-Indo-European peoples. Subsequently, theories have been put forth that Ragnarök represents a later evolution of a Proto-Indo-European belief along with other cultures descending from the Proto-Indo-Europeans. These parallels include comparisons of a cosmic winter motif between the Norse Fimbulwinter, the Iranian Bundahishn and Yima. Víðarr's stride has been compared to the Vedic god Vishnu in that both have a "cosmic stride" with a special shoe used to tear apart a beastly wolf. Larger patterns have also been drawn between "final battle" events in Indo-European cultures, including the occurrence of a blind or semi-blind figure in "final battle" themes, and figures appearing suddenly with surprising skills.

Volcanic eruptions

Hilda Ellis Davidson theorizes that the events in Völuspá occurring after the death of the gods (the sun turning black, steam rising, flames touching the heavens, etc.) may be inspired by the volcanic eruptions on Iceland. Records of eruptions on Iceland bear strong similarities to the sequence of events described in Völuspá, especially the eruption at Laki that occurred in 1783. Bertha Phillpotts theorizes that the figure of Surtr was inspired by Icelandic eruptions, and that he was a volcano demon.Surtr's name occurs in some Icelandic place names, among them the lava tube Surtshellir, a number of dark caverns in the volcanic central region of Iceland.

Bergbúa þáttr

Parallels have been pointed out between a poem spoken by a jötunn found in the 13th-century þáttr Bergbúa þáttr ("the tale of the mountain dweller"). In the tale, Thórd and his servant get lost while traveling to church in winter, and so take shelter for the night within a cave. Inside the cave they hear noises, witness a pair of immense burning eyes, and then the being with burning eyes recites a poem of 12 stanzas. The poem the being recites contains references to Norse mythology (including a mention of Thor) and also prophecies (including that "mountains will tumble, the earth will move, men will be scoured by hot water and burned by fire"). Surtr's fire receives a mention in stanza 10. John Lindow says that the poem may describe "a mix of the destruction of the race of giants and of humans, as in Ragnarök" but that "many of the predictions of disruption on earth could also fit the volcanic activity that is so common in Iceland."

Modern influences

In late 2013 and early 2014, English-language media outlets widely reported that Ragnarök was foretold to occur on 22 February 2014. Apparently patterned after the 2012 phenomenon, the claim was at times attributed to a "Viking Calendar". No such calendar is known to have existed, and the source was a "prediction" made to media outlets by the Jorvik Viking Centre in York, England, intended to draw attention to an event that the institution was to hold on that date. The Jorvik Viking Centre was criticized for misleading the public to promote the event. In a 2014 article on the claims, philologist Joseph S. Hopkins perceives the media response as an example of a broad revival of interest in the Viking Age and ancient Germanic topics.

Mayan calendar and the year 2012

The 2012 phenomenon was a range of eschatological beliefs that cataclysmic or otherwise transformative events would occur on or around 21 December 2012. This date was regarded as the end-date of a 5,126-year-long cycle in the Mesoamerican Long Count calendar, and as such, festivities to commemorate the date took place on 21 December 2012 in the countries that were part of the Maya civilization (Mexico, Guatemala, Honduras, and El Salvador), with main events at Chichén Itzá in Mexico, and Tikal in Guatemala.

Various astronomical alignments and numerological formulae were proposed as pertaining to this date. A New Age interpretation held that the date marked the start of a period during which Earth and its inhabitants would undergo a positive physical or spiritual transformation, and that 21 December 2012 would mark the beginning of a new era. Others suggested that the date marked the end of the world or a similar catastrophe. Scenarios suggested for the end of the world included the arrival of the next solar maximum, an interaction between Earth and the supermassive black hole at the center of the galaxy, or Earth's collision with a mythical planet called Nibiru.

Scholars from various disciplines quickly dismissed predictions of concomitant cataclysmic events as they arose. Professional Mayanist scholars stated that no extant classic Maya accounts forecast impending doom, and that the idea that the Long Count calendar ends in 2012 misrepresented Maya history and culture, while astronomers rejected the various proposed doomsday scenarios as pseudoscience, easily refuted by elementary astronomical observations.

UFO religions

UFO religions sometimes feature an anticipated end-time scenario in which extraterrestrial beings will bring about a radical change on Earth and/or "lift" the religious believers to a higher plane of existence. One such religious group's failed expectations of such an event, the Seekers, served as the basis for the classic social psychology research on cognitive dissonance conducted by the American psychologists Leon Festinger, Henry Riecken, and Stanley Schachter and published in their book When Prophecy Fails: A Social and Psychological Study of a Modern Group That Predicted the Destruction of the World (1956). Some adherents of UFO religions believe that the arrival or rediscovery of alien civilizations, technologies, and spirituality will enable human beings to overcome current ecological, spiritual, political, and social problems on planet Earth. Issues such as hatred, war, bigotry, poverty, and so on are said to be resolvable through the use of superior alien technology and spiritual abilities. Such belief systems are also described as millenarian in their outlook. In the late 1990s, religious scholar Andreas Grünschloß applied the term "cargoism" to adherents of UFO religions regarding their millenarian beliefs about the arrival of intelligent aliens on technologically advanced spacecrafts on planet Earth, in comparison to the Melanesian islanders's faith in the return of John Frum carrying the cargo with him on the islands.

Zoroastrianism

The Zoroastrian eschatological ideas are only alluded to in the surviving texts of the Avesta, and are known of in detail only from the texts of Zoroastrian tradition, in particular in the 9th-century text Bundahishn. The accompanying story, as it appears in the Bundahishn (GBd 30.1ff), runs as follows: At the end of the "third time" (the first being the age of creation, the second of mixture, and the third of separation), there will be a great battle between the forces of good (yazata) and those of evil (daeva), in which the good will triumph. On Earth, the Saoshyant will bring about a resurrection of the dead in the bodies they had before they died. This is followed by a last judgment through ordeal. The yazata Airyaman and Atar will melt the metal in the hills and mountains, and the molten metal will then flow across the earth like a river. All mankind—both the living and the resurrected dead—will be required to wade through that river, but for the righteous (ashavan) it will seem to be a river of warm milk, while the wicked will be burned. The river will then flow down to hell, where it will annihilate Angra Mainyu and the last vestiges of wickedness in the universe.

The narrative continues with a projection of Ahura Mazda and the six Amesha Spentas solemnizing a final act of worship (yasna), and the preparation of parahaoma from "white haoma". The righteous will partake of the parahaoma, which will confer immortality upon them. Thereafter, humankind will become like the Amesha Spentas, living without food, without hunger or thirst, and without weapons (or possibility of bodily injury). The material substance of the bodies will be so light as to cast no shadow. All humanity will speak a single language and belong to a single nation without borders. All will share a single purpose and goal, joining with the divine for a perpetual exaltation of God's glory.

Although frashokereti is a restoration of the time of creation, there is no return to the uniqueness of the primordial plant, animal and human; while in the beginning there was one plant, one animal and one human, the variety that had since issued would remain forever. Similarly, the host of divinities brought into existence by Ahura Mazda continue to have distinct existences, "and there is no prophecy of their re-absorption into the Godhead".

Existence of God

From Wikipedia, the free encyclopedia https://en.wikipedia.org/wiki/Existence_of_God The existence ...