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Sunday, August 2, 2026

Behavioral neuroscience

From Wikipedia, the free encyclopedia

Behavioral neuroscience, also known as biological psychology, biopsychology, or psychobiology, is part of the broad, interdisciplinary field of neuroscience, with its primary focus being on the biological and neural substrates underlying human experiences and behaviors, as in our psychology. Derived from an earlier field known as physiological psychology, behavioral neuroscience applies the principles of biology to study the physiological, genetic, and developmental mechanisms of behavior in humans and other animals.

Behavioral neuroscientists examine the biological bases of behavior through research that involves neuroanatomical substrates, environmental and genetic factors, effects of lesions and electrical stimulation, developmental processes, recording electrical activity, neurotransmitters, hormonal influences, chemical components, and the effects of drugs. Important topics of consideration for neuroscientific research in behavior include learning and memory, sensory processes, motivation and emotion, as well as genetic and molecular substrates concerning the biological bases of behavior. Subdivisions of behavioral neuroscience include the field of cognitive neuroscience, which emphasizes the biological processes underlying human cognition. Behavioral and cognitive neuroscience are both concerned with the neuronal and biological bases of psychology, with a particular emphasis on either cognition or behavior depending on the field.

History

Behavioral neuroscience as a scientific discipline emerged from a variety of scientific and philosophical traditions in the 18th and 19th centuries. René Descartes proposed physical models to explain animal as well as human behavior. Descartes suggested that the pineal gland, a midline unpaired structure in the brain of many organisms, was the point of contact between mind and body. Descartes also elaborated on a theory in which the pneumatics of bodily fluids could explain reflexes and other motor behavior. This theory was inspired by moving statues in a garden in Paris.

Other philosophers also helped give birth to psychology. One of the earliest textbooks in the new field, The Principles of Psychology by William James, argues that the scientific study of psychology should be grounded in an understanding of biology.

1907 image of a brain

The emergence of psychology and behavioral neuroscience as legitimate sciences can be traced from the emergence of physiology from anatomy, particularly neuroanatomy. Physiologists conducted experiments on living organisms, a practice that was distrusted by the dominant anatomists of the 18th and 19th centuries. The influential work of Claude Bernard, Charles Bell, and William Harvey helped to convince the scientific community that reliable data could be obtained from living subjects.

Even before the 18th and 19th centuries, behavioral neuroscience was beginning to take form as far back as 1700 B.C. The question that seems to continually arise is: what is the connection between the mind and body? The debate is formally referred to as the mind-body problem. There are two major schools of thought that attempt to resolve the mind–body problem; monism and dualism. Plato and Aristotle are two of several philosophers who participated in this debate. Plato believed that the brain was where all mental thought and processes happened. In contrast, Aristotle believed the brain served the purpose of cooling down the emotions derived from the heart. The mind-body problem was a stepping stone toward attempting to understand the connection between the mind and body.

William James

Another debate arose about localization of function or functional specialization versus equipotentiality which played a significant role in the development in behavioral neuroscience. As a result of localization of function research, many famous people found within psychology have come to various different conclusions. Wilder Penfield was able to develop a map of the cerebral cortex through studying epileptic patients along with Rassmussen. Research on localization of function has led behavioral neuroscientists to a better understanding of which parts of the brain control behavior. This is best exemplified through the case study of Phineas Gage.

The term "psychobiology" has been used in a variety of contexts, emphasizing the importance of biology, which is the discipline that studies organic, neural and cellular modifications in behavior, plasticity in neuroscience, and biological diseases in all aspects, in addition, biology focuses and analyzes behavior and all the subjects it is concerned about, from a scientific point of view. In this context, psychology helps as a complementary, but important discipline in the neurobiological sciences. The role of psychology in this questions is that of a social tool that backs up the main or strongest biological science. The term "psychobiology" was first used in its modern sense by Knight Dunlap in his book An Outline of Psychobiology (1914). Dunlap also was the founder and editor-in-chief of the journal Psychobiology. In the announcement of that journal, Dunlap writes that the journal will publish research "...bearing on the interconnection of mental and physiological functions", which describes the field of behavioral neuroscience even in its modern sense.

In relation to the discipline, Solomon Carter Fuller (1872 – 1953) also aided in the advancement of neurology and psychology with his Alzheimer's research. Dr. Fuller was the first African American psychiatrist and one of the pioneers of Alzheimer's disease. In 1904, Dr. Fuller began working as a research assistant under the founder of Alzheimer's disease, Alois Alzheimer, studying presenile dementia. Later in 1912, Dr. Fuller published the first review on Alzheimer's disease that included information regarding his patient who was the 9th person to ever be diagnosed with the disease. During his time as a researcher and doctor, he worked with black veterans to prevent them from getting misdiagnosed and deemed ineligible for military benefits; he also trained staff to diagnose side effects from sexually transmitted infections. In 1969, an award was established by the American Psychiatric Association called the Solomon Carter Fuller Award to honor black pioneers who worked to help other black people.

Neuroscience is considered a relatively new discipline, with the first conference for the Society of Neuroscience occurring in 1971. The meeting was held to merge different fields focused on studying the nervous system (ex. neuroanatomy, neurochemistry, physiological psychology, neuroendocrinology, clinical neurology, neurophysiology, neuropharmacology, etc.) by creating one interdisciplinary field. In 1983, the Journal of Comparative and Physiological Psychology, published by the American Psychological Association, was split into two separate journals: Behavioral Neuroscience and the Journal of Comparative Psychology. The author of the journal at the time gave reasoning for this separation, with one being that behavioral neuroscience is the broader contemporary advancement of physiological psychology. Furthermore, in all animals, the nervous system is the organ of behavior. Therefore, every biological and behavioral variable that influences behavior must go through the nervous system to do so. Present-day research in behavioral neuroscience studies all biological variables which act through the nervous system and relate to behavior.

Relationship to other fields of psychology and biology

In many cases, humans may serve as experimental subjects in behavioral neuroscience experiments; however, a great deal of the experimental literature in behavioral neuroscience comes from the study of non-human species, most frequently rats, mice, and monkeys. As a result, a critical assumption in behavioral neuroscience is that organisms share biological and behavioral similarities, enough to permit extrapolations across species. This allies behavioral neuroscience closely with comparative psychology, ethology, evolutionary biology, and neurobiology. Behavioral neuroscience also has paradigmatic and methodological similarities to neuropsychology, which relies heavily on the study of the behavior of humans with nervous system dysfunction (i.e., a non-experimentally based biological manipulation).

Research methods

The distinguishing characteristic of a behavioral neuroscience experiment is that either the independent variable of the experiment is biological, or some dependent variable is biological. In other words, the nervous system of the organism under study is permanently or temporarily altered, or some aspect of the nervous system is measured (usually to be related to a behavioral variable).

Disabling or decreasing neural function

  • Lesions – A classic method in which a brain-region of interest is naturally or intentionally destroyed to observe any resulting changes such as degraded or enhanced performance on some behavioral measure. Lesions can be placed with relatively high accuracy "Thanks to a variety of brain 'atlases' which provide a map of brain regions in 3-dimensional" stereotactic coordinates.[25]
    The part of the picture emphasized shows the lesion in the brain. This type of lesion can be removed through surgery.
    • Surgical lesions – Neural tissue is destroyed by removing it surgically.
    • Electrolytic lesions – Neural tissue is destroyed through the application of electrical shock trauma.
    • Chemical lesions – Neural tissue is destroyed by the infusion of a neurotoxin.
    • Temporary lesions – Neural tissue is temporarily disabled by cooling or by the use of anesthetics such as tetrodotoxin.
  • Transcranial magnetic stimulation – A new technique usually used with human subjects in which a magnetic coil applied to the scalp causes unsystematic electrical activity in nearby cortical neurons which can be experimentally analyzed as a functional lesion.
  • Synthetic ligand injection – A receptor activated solely by a synthetic ligand (RASSL) or Designer Receptor Exclusively Activated by Designer Drugs (DREADD), permits spatial and temporal control of G protein signaling in vivo. These systems utilize G protein-coupled receptors (GPCR) engineered to respond exclusively to synthetic small molecules ligands, like clozapine N-oxide (CNO), and not to their natural ligand(s). RASSL's represent a GPCR-based chemogenetic tool. These synthetic ligands upon activation can decrease neural function by G-protein activation. This can with Potassium attenuating neural activity.
  • Optogenetic inhibition – A light activated inhibitory protein is expressed in cells of interest. Powerful millisecond timescale neuronal inhibition is instigated upon stimulation by the appropriate frequency of light delivered via fiber optics or implanted LEDs in the case of vertebrates, or via external illumination for small, sufficiently translucent invertebrates. Bacterial Halorhodopsins or Proton pumps are the two classes of proteins used for inhibitory optogenetics, achieving inhibition by increasing cytoplasmic levels of halides (Cl−
    ) or decreasing the cytoplasmic concentration of protons, respectively.

Enhancing neural function

  • Electrical stimulation – A classic method in which neural activity is enhanced by application of a small electric current (too small to cause significant cell death).
  • Psychopharmacological manipulations – A chemical receptor antagonist induces neural activity by interfering with neurotransmission. Antagonists can be delivered systemically (such as by intravenous injection) or locally (intracerebrally) during a surgical procedure into the ventricles or into specific brain structures. For example, NMDA antagonist AP5 has been shown to inhibit the initiation of long term potentiation of excitatory synaptic transmission (in rodent fear conditioning) which is believed to be a vital mechanism in learning and memory.
  • Synthetic Ligand Injection – Likewise, Gq-DREADDs can be used to modulate cellular function by innervation of brain regions such as Hippocampus. This innervation results in the amplification of γ-rhythms, which increases motor activity.
  • Transcranial magnetic stimulation – In some cases (for example, studies of motor cortex), this technique can be analyzed as having a stimulatory effect (rather than as a functional lesion).
  • Optogenetic excitation – A light activated excitatory protein is expressed in select cells. Channelrhodopsin-2 (ChR2), a light activated cation channel, was the first bacterial opsin shown to excite neurons in response to light, though a number of new excitatory optogenetic tools have now been generated by improving and imparting novel properties to ChR2.

Measuring neural activity

  • Optical techniques – Optical methods for recording neuronal activity rely on methods that modify the optical properties of neurons in response to the cellular events associated with action potentials or neurotransmitter release.
    • Voltage sensitive dyes (VSDs) were among the earliest method for optically detecting neuronal activity. VSDs commonly changed their fluorescent properties in response to a voltage change across the neuron's membrane, rendering membrane sub-threshold and supra-threshold (action potentials) electrical activity detectable. Genetically encoded voltage sensitive fluorescent proteins have also been developed.
    • Calcium imaging relies on dyes or genetically encoded proteins that fluoresce upon binding to the calcium that is transiently present during an action potential.
    • Synapto-pHluorin is a technique that relies on a fusion protein that combines a synaptic vesicle membrane protein and a pH sensitive fluorescent protein. Upon synaptic vesicle release, the chimeric protein is exposed to the higher pH of the synaptic cleft, causing a measurable change in fluorescence.
  • Single-unit recording – A method whereby an electrode is introduced into the brain of a living animal to detect electrical activity that is generated by the neurons adjacent to the electrode tip. Normally this is performed with sedated animals but sometimes it is performed on awake animals engaged in a behavioral event, such as a thirsty rat whisking a particular sandpaper grade previously paired with water in order to measure the corresponding patterns of neuronal firing at the decision point.[45]
  • Multielectrode recording – The use of a bundle of fine electrodes to record the simultaneous activity of up to hundreds of neurons.
  • Functional magnetic resonance imaging – fMRI, a technique most frequently applied on human subjects, in which changes in cerebral blood flow can be detected in an MRI apparatus and are taken to indicate relative activity of larger scale brain regions (i.e., on the order of hundreds of thousands of neurons).
  • PET brain scans can show chemical differences in the brain between addicts and non-addicts. The normal images in the bottom row come from non-addicts while people with addictions have scans that look more abnormal.
    Positron emission tomography - PET detects particles called photons using a 3-D nuclear medicine examination. These particles are emitted by injections of radioisotopes such as fluorine. PET imaging reveal the pathological processes which predict anatomic changes making it important for detecting, diagnosing and characterising many pathologies.
  • Electroencephalography – EEG, and the derivative technique of event-related potentials, in which scalp electrodes monitor the average activity of neurons in the cortex (again, used most frequently with human subjects). This technique uses different types of electrodes for recording systems such as needle electrodes and saline-based electrodes. EEG allows for the investigation of mental disorders, sleep disorders and physiology. It can monitor brain development and cognitive engagement.
  • Electrocorticography – ECoG, similar to an EGG, the ECoG records the brains electrical activity and is commonly used on patients to monitor and evaluate epilepsy or seizures. However, the ECoG is an invasive medical procedure that measures signals directly from the brains surface. The ECoG provides high spatial and temporal resolution as opposed to its non-invasive counterpart, the EEG which has low temporal and spatial resolution. Due to the invasiveness of the procedure, the data for human patients is harder to collect than a standard EEG assessment.
  • Functional neuroanatomy – A more complex counterpart of phrenology. The expression of some anatomical marker is taken to reflect neural activity. For example, the expression of immediate early genes is thought to be caused by vigorous neural activity. Likewise, the injection of 2-deoxyglucose prior to some behavioral task can be followed by anatomical localization of that chemical; it is taken up by neurons that are electrically active.
  • Magnetoencephalography – MEG shows the functioning of the human brain through the measurement of electromagnetic activity. Measuring the magnetic fields created by the electric current flowing within the neurons identifies brain activity associated with various human functions in real time, with millimeter spatial accuracy. Clinicians can noninvasively obtain data to help them assess neurological disorders and plan surgical treatments.

Genetic techniques

  • QTL mapping – The influence of a gene in some behavior can be statistically inferred by studying inbred strains of some species, most commonly mice. The recent sequencing of the genome of many species, most notably mice, has facilitated this technique.
  • Selective breeding – Organisms, often mice, may be bred selectively among inbred strains to create a recombinant congenic strain. This might be done to isolate an experimentally interesting stretch of DNA derived from one strain on the background genome of another strain to allow stronger inferences about the role of that stretch of DNA.
  • Genetic engineering – The genome may also be experimentally-manipulated; for example, knockout mice can be engineered to lack a particular gene, or a gene may be expressed in a strain which does not normally do so (the 'transgenic'). Advanced techniques may also permit the expression or suppression of a gene to occur by injection of some regulating chemical.

Quantifying behavior

  • Fruit fly (Drosophila melanogaster) leg joints being tracked in 3D with Anipose.
    Markerless pose estimation – The advancement of computer vision techniques in recent years have allowed for precise quantifications of animal movements without needing to fit physical markers onto the subject. On high-speed video captured in a behavioral assay, keypoints from the subject can be extracted frame-by-frame, which is often useful to analyze in tandem with neural recordings/manipulations. Analyses can be conducted on how keypoints (i.e. parts of the animal) move within different phases of a particular behavior (on a short timescale), or throughout an animal's behavioral repertoire (longer timescale). These keypoint changes can be compared with corresponding changes in neural activity. A machine learning approach can also be used to identify specific behaviors (e.g. forward walking, turning, grooming, courtship, etc.), and quantify the dynamics of transitions between behaviors.

Other research methods

Computational models - Using a computer to formulate real-world problems to develop solutions. Although this method is often focused in computer science, it has begun to move towards other areas of study. For example, psychology is one of these areas. Computational models allow researchers in psychology to enhance their understanding of the functions and developments in nervous systems. Examples of methods include the modelling of neurons, networks and brain systems and theoretical analysis. Computational methods have a wide variety of roles including clarifying experiments, hypothesis testing and generating new insights. These techniques play an increasing role in the advancement of biological psychology.

Limitations and advantages

Different manipulations have advantages and limitations. Neural tissue destroyed as a primary consequence of a surgery, electric shock or neurotoxin can confound the results so that the physical trauma masks changes in the fundamental neurophysiological processes of interest. For example, when using an electrolytic probe to create a purposeful lesion in a distinct region of the rat brain, surrounding tissue can be affected: so, a change in behavior exhibited by the experimental group post-surgery is to some degree a result of damage to surrounding neural tissue, rather than by a lesion of a distinct brain region. Most genetic manipulation techniques are also considered permanent. Temporary lesions can be achieved with advanced in genetic manipulations, for example, certain genes can now be switched on and off with diet. Pharmacological manipulations also allow blocking of certain neurotransmitters temporarily as the function returns to its previous state after the drug has been metabolized.

Topic areas

Experimental setup for noninvasive theta-burst stimulation of the human striatum to enhance striatal activity and motor skill learning.

In general, behavioral neuroscientists study various neuronal and biological processes underlying behavior, though limited by the need to use nonhuman animals. As a result, the bulk of literature in behavioral neuroscience deals with experiences and mental processes that are shared across different animal models such as:

However, with increasing technical sophistication and with the development of more precise noninvasive methods that can be applied to human subjects, behavioral neuroscientists are beginning to contribute to other classical topic areas of psychology, philosophy, and linguistics, such as:

Behavioral neuroscience has also had a strong history of contributing to the understanding of medical disorders, including those that fall under the purview of clinical psychology, clinical neuropsychology, and biological psychopathology (also known as abnormal psychology). Although animal models do not exist for all mental illnesses, the field has contributed important therapeutic data on a variety of conditions, including:

  • Parkinson's disease, a degenerative disorder of the central nervous system that often impairs motor skills and speech.
  • Huntington's disease, a rare inherited neurological disorder whose most obvious symptoms are abnormal body movements and a lack of coordination. It also affects a number of mental abilities and some aspects of personality.
  • Alzheimer's disease, a neurodegenerative disease that, in its most common form, is found in people over the age of 65 and is characterized by progressive cognitive deterioration, together with declining activities of daily living and by neuropsychiatric symptoms or behavioral changes.
  • Clinical depression, a common psychiatric disorder, characterized by a persistent lowering of mood, loss of interest in usual activities and diminished ability to experience pleasure.
  • Schizophrenia, a psychiatric diagnosis that describes a mental illness characterized by impairments in the perception or expression of reality, most commonly manifesting as auditory hallucinations, paranoid or bizarre delusions or disorganized speech and thinking in the context of significant social or occupational dysfunction.
  • Autism, a brain development disorder that impairs social interaction and communication, and causes restricted and repetitive behavior, all starting before a child is three years old. However, neuropsychologist, which are individuals in a behavioral neuroscience subfield have used mindfulness interventions to combat socially disruptive behaviors in autistic children.
  • Anxiety, a physiological state characterized by cognitive, somatic, emotional, and behavioral components. These components combine to create the feelings that are typically recognized as fear, apprehension, or worry.
  • Drug abuse, a chronic behavioral disorder in which individuals seek reward and pleasure reinforcement through uncontrollable drug use.
  • Alcoholism, a behavioral disorder in which individuals compulsively consume alcoholic substances. This disorder can result in several medical, neurological, and psychiatric conditions.

Research on topic areas

Cognition

High resolution fMRI of the human brain.

Behavioral neuroscientists conduct research on various cognitive processes through the use of different neuroimaging techniques. Examples of cognitive research might involve examination of neural correlates during emotional information processing, such as one study that analyzed the relationship between subjective affect and neural reactivity during sustained processing of positive (savoring) and negative (rumination) emotion. The aim of the study was to analyze whether repetitive positive thinking (seen as being beneficial) and repetitive negative thinking (significantly related to worse mental health) would have similar underlying neural mechanisms. Researchers found that the individuals who had a more intense positive affect during savoring, were also the same individuals who had a more intense negative affect during rumination. fMRI data showed similar activations in brain regions during both rumination and savoring, suggesting shared neural mechanisms between the two types of repetitive thinking. The results of the study suggest there are similarities, both subjectively and mechanistically, with repetitive thinking about positive and negative emotions. This overall suggests shared neural mechanisms by which sustained emotional processing of both positive and negative information occurs.

Stress

Research within the field of behavioral neuroscience involves looking at the complex neuroanatomy underlying different emotional processes, such as stress. Godoy et al. (2018) did so by providing an in-depth analyzation of the neurobiological underpinnings of the stress response. The article features on an overview on the historical development of stress research and its importance leading up to research related to both physical and psychological stressors today. The authors explored various significators of stress and their corresponding neuroanatomical processing, along with the temporal dynamics of both acute and chronic stress and its effects on the brain. Overall, the article provides a comprehensive scientific overview of stress through a neurobiological lens, highlighting the importance of our current knowledge in stress-related research areas today.

Sensation and Perception

Another common research topic within behavioral neuroscience is sensation and perception. Wu et al. (2023) conducted a study that analyzed auditory and somatosensory realms association with psychosocial factors (e.g., depression) and cognitive impairment among the geriatric population. The article discussed how hearing loss is the most common form of sensory dysfunction within the geriatric population as 2.5 billion people will experience this type of sensory depletion. The researchers used the Chinese version Mini-Mental State Examination (MMSE), Nottingham Sensory Assessment scale (NSA), Albert's test, Geriatric Depression Scale-30, and the Lubben Social network Scale-6 (LSNS-6) to assess cognitive function, sensation, perception, and negative socio-psychological factors (i.e., depression and social isolation), respectively. After performing a statistical analysis based on the participants assessment scores it was found that older people with auditorial sensory loss, atypical perception, and depression are more at risk for cognitive impairment. However, implications such as rehabilitation, non-pharmacological interventions for sensory loss and depression may reduce the amount of cognitive impairment older adults experience.

Evolutionary neuroscience

From Wikipedia, the free encyclopedia

Evolutionary neuroscience is the scientific study of the evolution of nervous systems. Evolutionary neuroscientists investigate the evolution and natural history of nervous system structure, functions and emergent properties. The field draws on concepts and findings from both neuroscience and evolutionary biology. Historically, most empirical work has been in the area of comparative neuroanatomy, and modern studies often make use of phylogenetic comparative methods. Selective breeding and experimental evolution approaches are also being used more frequently.

Conceptually and theoretically, the field is related to fields as diverse as cognitive genomics, neurogenetics, developmental neuroscience, neuroethology, comparative psychology, evo-devo, behavioral neuroscience, cognitive neuroscience, behavioral ecology, biological anthropology and sociobiology.

Evolutionary neuroscientists examine changes in genes, anatomy, physiology, and behavior to study the evolution of changes in the brain. They study a multitude of processes including the evolution of vocal, visual, auditory, taste, and learning systems as well as language evolution and development. In addition, evolutionary neuroscientists study the evolution of specific areas or structures in the brain such as the amygdala, forebrain and cerebellum as well as the motor or visual cortex.

History

Studies of the brain began during ancient Egyptian times but studies in the field of evolutionary neuroscience began after the publication of Darwin's On the Origin of Species in 1859. At that time, brain evolution was largely viewed at the time in relation to the incorrect scala naturae. Phylogeny and the evolution of the brain were still viewed as linear. During the early 20th century, there were several prevailing theories about evolution. Darwinism was based on the principles of natural selection and variation, Lamarckism was based on the passing down of acquired traits, Orthogenesis was based on the assumption that tendency towards perfection steers evolution, and Saltationism argued that discontinuous variation creates new species. Darwin's became the most accepted and allowed for people to starting thinking about the way animals and their brains evolve.

The 1936 book The Comparative Anatomy of the Nervous System of Vertebrates Including Man by the Dutch neurologist C.U. Ariëns Kappers (first published in German in 1921) was a landmark publication in the field. Following the Evolutionary Synthesis, the study of comparative neuroanatomy was conducted with an evolutionary view, and modern studies incorporate developmental genetics. It is now accepted that phylogenetic changes occur independently between species over time and can not be linear. It is also believed that an increase with brain size correlates with an increase in neural centers and behavior complexity.

Major arguments

Over time, there are several arguments that would come to define the history of evolutionary neuroscience. The first is the argument between E.G. St. Hilaire and G. Cuvier over the topic of "common plan versus diversity". St. Hilaire argued that all animals are built based on a single plan or archetype and he stressed the importance of homologies between organisms, while Cuvier believed that the structure of organs was determined by their function and that knowledge of the function of one organ could help discover the functions of other organs. He argued that there were at least four different archetypes. After Darwin, the idea of evolution was more accepted and St. Hilaire's idea of homologous structures was more accepted. The second major argument is that of Aristotle's scala naturae (scale of nature) and the great chain of being versus the phylogenetic bush. The scala naturae, later also called the phylogenetic scale, was based on the premise that phylogenies are linear or like a scale while the phylogenetic bush argument was based on the idea that phylogenies were not linear, and more resembled a bush – the currently accepted view. A third major argument dealt with the size of the brain and whether relative size or absolute size was more relevant in determining function. In the late 18th century, it was determined that brain to body ratio reduces as body size increases. However more recently, there is more focus on absolute brain size as this scales with internal structures and functions, with the degree of structural complexity, and with the amount of white matter in the brain, all suggesting that absolute size is much better predictor of brain function. Finally, a fourth argument is that of natural selection (Darwinism) versus developmental constraints (concerted evolution). It is now accepted that the evolution of development is what causes adult species to show differences and evolutionary neuroscientists maintain that many aspects of brain function and structure are conserved across species.

Techniques

Throughout history, we see how evolutionary neuroscience has been dependent on developments in biological theory and techniques. The field of evolutionary neuroscience has been shaped by the development of new techniques that allow for the discovery and examination of parts of the nervous system. In 1873, C. Golgi devised the silver nitrate method which allowed for the description of the brain at the cellular level as opposed to simply the gross level. Santiago and Pedro Ramon used this method to analyze numerous parts of brains, broadening the field of comparative neuroanatomy. In the second half of the 19th century, new techniques allowed scientists to identify neuronal cell groups and fiber bundles in brains. In 1885, Vittorio Marchi discovered a staining technique that let scientists see induced axonal degeneration in myelinated axons, in 1950, the "original nauta procedure" allowed for more accurate identification of degenerating fibers, and in the 1970s, there were several discoveries of multiple molecular tracers which would be used for experiments even today. In the last 20 years, cladistics has also become a useful tool for looking at variation in the brain.

Evolution of brains

Many of Earth's early years were filled with brainless creatures, and among them was the amphioxus, which can be traced as far back as 550 million years ago. Amphioxi had a significantly simpler way of life, which made it not necessary for them to have a brain. To replace its absence of a brain, the prehistoric amphioxi had a limited nervous system, which was composed of only a bunch of cells. These cells optimized their uses because many of the cells for sensing intertwined with the cells used for its very simple system for moving, which allowed it to propel itself through bodies of water and react without much processing while the cells remaining were used for the detection of light to account to the fact that it had no eyes. It also did not need a sense of hearing. Even though the amphioxi had limited senses, they did not need them to survive efficiently, as their life was mainly dedicated to sitting on the seafloor to eat. Although the amphioxus' "brain" might seem severely underdeveloped compared to their human counterparts, it was set well for its respective environment, which has allowed it to prosper for millions of years.

Although many scientists once assumed that the brain evolved to achieve an ability to think, such a view is today considered a great misconception. 500 million years ago, the Earth entered into the Cambrian period, where hunting became a new concern for survival in an animal's environment. At this point, animals became sensitive to the presence of another, which could serve as food. Although hunting did not inherently require a brain, it was one of the main steps that pushed the development of one, as organisms progressed to develop advanced sensory systems.

In response to progressively complicated surroundings, where competition between animals with brains started to arise for survival, animals had to learn to manage their energy. As creatures acquired a variety of senses for perception, animals progressed to develop allostasis, which played the role of an early brain by forcing the body to gather past experiences to improve prediction. Since prediction beat reaction, organisms who planned their manoeuvres were more likely to survive than those who did not. This came with equally managing energy adequately, which nature favoured. Animals that had not developed allostasis would be at a disadvantage for their purpose of exploration, foraging and reproduction, as death was a higher risk factor.

As allostasis continued to develop in animals, their bodies equally continuously evolved in size and complexity. They progressively started to develop cardiovascular systems, respiratory systems and immune systems to survive in their environments, which required bodies to have something more complex than the limited quality of cells to regulate themselves. This encouraged the nervous systems of many creatures to develop into a brain, which was sizeable and strikingly similar to how most animal brains look today.

Evolution of the human brain

Darwin, in The Descent of Man, stipulated that the mind evolved simultaneously with the body. According to his theory, all humans have a barbaric core that they learn to deal with. Darwin's theory allowed people to start thinking about the way animals and their brains evolve.

Reptile brain

Plato's insight on the evolution of the human brain contemplated the idea that all humans were once lizards, with similar survival needs such as feeding, fighting and mating. In the classical era Plato first described this concept as the "lizard mind" – the deepest layer and one of three parts of his conception of a three-part human mind. In the 20th century P. MacLean developed a similar, modern triune brain theory.

Recent research in molecular genetics has demonstrated evidence that there is no difference in the neurons that reptiles and nonhuman mammals have when compared to humans. Instead, new research speculates that all mammals, and potentially reptiles, birds and some species of fish, evolve from a common order pattern. This research reinforces the idea that human brains are structurally no t any different from many other organisms.

The cerebral cortex of reptiles resembles that of mammals, although simplified. Although the evolution and function of the human cerebral cortex is still shrouded in mystery, we know that it is the most dramatically changed part of the brain during recent evolution. The reptilian brain, 300 million years ago, was made for all our basic urges and instincts like fighting, reproducing, and mating. The reptile brain evolved 100 million years later and gave us the ability to feel emotion. Eventually, it was able to develop a rational part that controls our inner animal.

Visual perception

Vision allows humans to process the world surrounding them to a certain extent. Through the wavelengths of light, the human brain can associate them to a specific event. Although the brain obviously perceives its surroundings at a specific moment, the brain equally predicts the upcoming changes in the environment. Once it has noticed them, the brain begins to prepare itself to encounter the new scenario by attempting to develop an adequate response. This is accomplished by using the data the brain has at its access, which can be to use past experiences and memories to form a proper response. However, sometimes the brain fails to predict accurately which means that the mind perceives a false illustration. Such an incorrect image occurs when the brain uses an inadequate memory to respond to what it is facing, which means that the memory does not correlate with the real scenario.(pp 75–76)

The rabbit–duck illusion is a famous ambiguous image in which a rabbit or a duck can be seen. The earliest known version is an unattributed drawing from the 23 October 1892 issue of Blätter magazine.

Research about how visual perception has developed in evolution is today best understood through studying present-day primates since the organization of the brain cannot be ascertained only by analyzing fossilized skulls.

The brain interprets visual information in the occipital lobe, a region in the back of the brain. The occipital lobe contains the visual cortex and the thalamus, which are the two main actors in processing visual information. The process of interpreting information has proven to be more complex than "what you see is what you get". Misinterpreting visual information is more common than previously believed.

As knowledge of the human brain has evolved, researchers discover that our visual perception is much closer to a construction of the brain than a direct "photograph" of what is in front of us. This can lead to misperceiving certain situations or elements in the brain's attempt to keep us safe. For example, an on-edge soldier believes a young child with a stick is a grown man with a gun, as the brain's sympathetic system, or fight-or-flight mode, is activated.

An example of this phenomenon can be observed in the rabbit–duck illusion. Depending on how the image is looked at, the brain can interpret the image of a rabbit, or a duck. There is no right or wrong answer, but it is proof that what is seen may not be the reality of the situation.

Auditory perception

The organization of the human auditory cortex is divided into core, belt, and parabelt. This closely resembles that of present-day primates.

The concept of auditory perception resembles visual perception very similarly. Our brain is wired to act on what it expects to experience. The sense of hearing helps situate an individual, but it also gives them hints about what else is around them. If something moves, they know approximately where it is and by the tone of it, the brain can predict what moved. If someone were to hear leaves rustling in a forest, the brain might interpret that sound as being an animal which could be a dangerous factor, but it would simply be another person walking. The brain can predict many things based on what it is interpreting, however, those predictions may not all be true.

Language development

Evidence of a rich cognitive life in primate relatives of humans is extensive, and a wide range of specific behaviours in line with Darwinian theory is well documented. However, until recently, research has disregarded nonhuman primates in the context of evolutionary linguistics, primarily because unlike vocal learning birds, our closest relatives seem to lack imitative abilities. Evolutionary speaking, there is great evidence suggesting a genetic groundwork for the concept of languages has been in place for millions of years, as with many other capabilities and behaviours observed today.

While evolutionary linguists agree on the fact that volitional control over vocalizing and expressing language is a quite recent leap in the history of the human race, that is not to say auditory perception is a recent development as well. Research has shown substantial evidence of well-defined neural pathways linking cortices to organize auditory perception in the brain. Thus, the issue lies in our abilities to imitate sounds.

Beyond the fact that primates may be poorly equipped to learn sounds, studies have shown them to learn and use gestures far better. Visual cues and motoric pathways developed millions of years earlier in our evolution, which seems to be one reason for our earlier ability to understand and use gestures.

Cognitive specializations

Evolution shows how certain environments and surroundings will favor the development of specific cognitive functions of the brain to aid an animal or in this case human to successfully live in that environment.

Cognitive specialization in a theory in which cognitive functions, such as the ability to communicate socially, can be passed down genetically through offspring. This would benefit species in the process of natural selection. As for studying this in relation to the human brain, it has been theorized that very specific social skills apart from language, such as trust, vulnerability, navigation, and self-awareness can also be passed by offspring.

Transgenerational trauma

From Wikipedia, the free encyclopedia

Transgenerational trauma, intergenerational trauma, or generational trauma is the psychological and physiological effects that the trauma experienced by people has on subsequent generations in that group. The primary mode of transmission is the shared family environment of the infant, causing psychological, behavioral and social changes in the individual.

Collective trauma is when psychological trauma experienced by communities and identity groups is carried on as part of the group's collective memory and shared sense of identity. For example, collective trauma was experienced by Jewish Holocaust survivors and their contemporaries within the wider Jewish community. As another example, the Indigenous Peoples of Canada experienced it within the Canadian Indian residential school system. African Americans who were enslaved is another. When this collective trauma affects subsequent generations, it is called transgenerational trauma. For example, when Jewish people, who are born into a later generation, learn about the Holocaust (presumably from older family members), and then experience extreme stress or practice survivalism out of fear of another Holocaust.

Transgenerational trauma can be a collective experience that affects groups of people who share a cultural identity (e.g., ethnicity, nationality, or religious identity). It can also be applied to single families or individual parent–child dyads. For example, survivors of individual child abuse and both direct survivors of the collective trauma and members of subsequent generations individually may develop complex post-traumatic stress disorder.

Examples of this include collective trauma experienced by descendants of the Atlantic slave trade; segregation and Jim Crow laws in the United States; apartheid in South Africa; the Scramble for Africa, Armenian genocide survivors, Jewish Holocaust survivors and other members of the Jewish community at the time; Bosnian war survivors; by the First Peoples of Canada within the Canadian Indian residential school system; by Native Americans when they were forcibly displaced and removed from their land; and, in Australia, the Stolen Generations and other hardships inflicted on Aboriginal and Torres Strait Islander peoples. Descendants of survivors may experience extreme stress, leading to a variety of other consequences.

While transgenerational trauma gained attention in recent decades, the hypothesis of an epigenetic mechanism remains controversial due to a lack of rigorous experimental results on humans.

History

This field of research is relatively young, but was expanded in the mid-to-late-2000s. Intergenerational trauma was first recognized in the children of Holocaust survivors. In 1966, psychologists began to observe large numbers of children of Holocaust survivors seeking mental help in clinics in Canada. The grandchildren of Holocaust survivors were overrepresented by 300% among the referrals to a psychiatry clinic in comparison with their representation in the general population. Since then, transgenerational trauma has been noted amongst descendants of African-Americans forced into slavery, Native American genocide survivors, war survivors, refugees, survivors of domestic violence, and many other groups that have experienced collective distress.

Research on possible biological mechanisms for inheritance of trauma began in the late 1990s. It has been suggested that traumatic stress can be passed down to future generations via epigenetics. However, the effect is difficult to separate from environmental and cultural transmission and conclusive evidence that it occurs in humans has yet to be found.

Although methylation of stress-related genes in humans may affect development, there is no evidence that these changes in humans are passed on to subsequent generations. Methylation is normally erased when an egg cell is fertilized.

Definitions and description

Transgenerational trauma is a collective experience that affects groups of people because of their cultural identity (e.g., ethnicity, nationality, or religious identity). Because of its collective nature, the term is not usually applied to single families or individual parent–child dyads. However, like survivors of individual child abuse, individually, both direct survivors of the collective trauma and members of subsequent generations may develop complex post-traumatic stress disorder.

Trauma may be transmitted socially (e.g., through learned behaviors) or through the effects of stress on development before birth (inc. increased smoking/alcohol use).

Historical trauma

Historical trauma, a sub-type of transgenerational trauma, is the collective devastation of the past that continues to affect populations in the present through inter-generational transmission. Historical trauma results in vulnerability to mental and physical health problems due to ancestral suffering which has been collected throughout generations into "legacies of disability for contemporary descendants". Although the actual traumatic event and affect group(s) are heterogeneous, all historical traumas consist of three elements: a traumatic event, a resulting collective suffering, and a multigenerational impact of that trauma. Over time the trauma and relationship to the victims typically evolve in a similar but more complicated way to genetic anticipation, resulting in a greater loss of identity of the victims and further integration into society.

For individual victims, historical trauma often manifests in four ways: depression, hyper-vigilance, traumatic bond formation, and reenactment of the trauma. Building upon the clinical observations by Selma Fraiberg, child trauma researchers such as Byron Egeland, Inge Bretherton, and Daniel Schechter have empirically identified psychological mechanisms that favor intergenerational transmission, including dissociation in the context of attachment, and "communication" of prior traumatic experience as an effect of parental efforts to maintain self-regulation in the context of post-traumatic stress disorder and related alterations in social cognitive processes.

Symptoms

Symptoms of intergenerational trauma always begins with the survivor of a trauma, which tend to manifest as symptoms of PTSD. Oftentimes trauma in the second generation is deemed as a traumatic response to parental trauma. Transmission between the parent and child can be broken down into five measures: communication, conflict, family cohesion, parental warmth, and parental involvement. High levels of maternal stress were directly correlated with weak family functioning and indirectly correlated with deviant behavior among children. Common symptoms in children consisted of depression, antisocial behavior, delinquency, and disruptive behavior in school. Some children experienced direct transmission in which their trauma stemmed from the interactions and relationships with their parents, while others experienced indirect transmission in which their trauma was mainly rooted in guilt. Those who were affected through direct transmission were more likely to lash out through their actions, while those who were affected through indirect transmission were more likely to develop depression, anxiety, and guilt.

Symptoms also differed based on ethnicity and type of original trauma. Enslavement, genocide, domestic violence, sexual abuse, and extreme poverty are all common sources of trauma that lead to intergenerational trauma. A lack of therapy also worsens symptoms and can lead to transmission. For instance, survivors of child sexual abuse may negatively influence future generations due to their past unresolved trauma. This can lead to increased feelings of mistrust, isolation, and loneliness. Descendants of enslaved persons when faced with racism-motivated violence, microaggressions, or outward racism, react as if they were faced with the original trauma that was generationally transmitted to them. There are a variety of stressors in one's life that led to this PTSD-like reaction such as varying racist experiences, daily stressors, major race-related life events, or collective racism or traumas. This also presents itself in parenting styles. Goodman and West-Olatunji proposed potential transgenerational trauma in the aftermath of natural disasters. In a post-Hurricane Katrina New Orleans, residents have seen a dramatic increase in interpersonal violence with higher mortality rates. This phenomenon has been also been reported in the descendants of Indigenous students at residential schools, who were removed from their parents and extended family and lacked models for parenting as a result. Being punished for speaking their native language and forbidden from practicing traditional rituals had a traumatic effect on many students, and child abuse was rampant in the schools as well.

Symptoms of transgenerational trauma have in recent years been identified among black Americans, in relation to the effects of slavery and racial discrimination. This passing of trauma can be rooted from the family unit itself, or found in society via current discrimination and oppression. The traumatic event does not need to be individually experienced by all members of a family; the lasting effects can still remain and impact descendants from external factors. For example, black children's internalization of others' reactions to their skin color manifests as a form of lasting trauma originally experienced by their ancestors. This reaction to black skin stems from similar attitudes that led to the traumatizing conditions and enslavement of slaves. Black children and youth are more susceptible to racial trauma because they have not yet acquired the knowledge to have a full understanding of racism and its effects. However, these traumatizing behaviors experienced at such a young age are a reflection of a child's parenting. A White child may learn racist behaviors from their environment, but by the same token a black child can learn to assert their blackness and how to respond to racist remarks and actions from their parents. Traces of trauma have an impact on black and other minority children's success in an educational context. Transgenerational trauma has also been heavily recorded in refugees and their children, which can last through several generations. Such traumas can stem from violence, political persecution, familial instability, as well as the hardships of migration.

Affected groups

Descendants of enslaved people

In general, black Americans who have any mental illness are resistant to receiving treatment due to stigma, negative conceptions, and fear of discrimination. This reduces the number of those affected to seek help. Lack of treatment causes the symptoms to compound leading to further internalization of distress and a worsening of mental health in the individual. Those affected by race-based trauma oftentimes do not seek treatment not only because of stigma but because of fear that the medical professional will not understand their perspective of a disenfranchised minority. Furthermore, the existing stigma of mental health has led to a lack of research and consequently treatment. However, lack of treatment can also be attributed to the misdiagnosis of symptoms. Signs of trauma exhibited in black children are often labeled as behavioral or educational disabilities, allowing the trauma to go untreated. While trauma symptoms often manifest as other mental illnesses such as depression and anxiety, the larger diagnosis often goes untreated.

Koreans

Han is a concept of an emotion, variously described as some form of grief or resentment, among others, that is said to be an essential element of Korean identity by some, and a modern post-colonial identity by others.

Michael D. Shin argues that the central aspect of han is loss of identity, and defines han as "the complex of emotions that result from the traumatic loss of collective identity". Han is most commonly associated with divided families: families who were separated during the Korean War. According to Shin, all Koreans may experience han, or a "constant feeling of being less than whole", because of not having a collective identity as a result of the continued division of Korea. Furthermore, new generations of Koreans seemingly inherit it because of growing up in a divided country.

Refugees

Refugees are often at risk of experiencing transgenerational trauma. While many refugees experience some sort of loss and trauma, war-related trauma has been documented to have longer-lasting effects on mental health and span through more generations. Children are especially prone to the trauma of resettling, as their childhood may have been disrupted by migration to a new country. Additionally, they often face the difficulty of learning a new language, adapting to a new environment, and navigating the school's social system in their host country. Normal caregiving is disrupted by the process of fleeing from their original home, and it may continue to be disrupted by their parents' PTSD symptoms and challenges faced in their new home. Furthermore, many host countries do not provide adequate mental healthcare systems to refugees, which can worsen symptoms and lead to transmission of trauma. In general, children of refugees exhibited higher overall levels of depression, PTSD, anxiety, attention deficiency, stress, and other psychological issues. Most refugees who flee from their homes do so to escape war, conflict, or natural disasters. More often times than not the wellness of refugees' homeland does not improve which causes continuous exposure to the originating trauma. This can be described as secondhand trauma and can be experienced by many. However, the offspring who have both transgenerational trauma and intergenerational trauma may experience secondhand trauma and a greater scale.

Vietnam war refugees

Since 1975, the US has accepted many refugees from Vietnam, Cambodia, Thailand, and Laos. As a result of the Vietnam War, many of these Southeast Asian refugees are at high risk of experiencing transgenerational trauma. Factors occurring both before and after immigration to America could contribute to traumatization in these groups. Being forced to witness and flee violence and war was a uniquely traumatic occurrence, resulting in high levels of psychological distress. Upon arriving in the United States, Vietnamese Americans struggled to adapt to their new environment, resulting in limited social mobility, high rates of poverty within the community, and exposure to community violence. Exposure to these stressors is correlated with higher trauma symptoms in first-generation Vietnamese-American refugees. In turn, these traumatic experiences impacted the ways that refugees raised their children since they internalized notions of being outsiders in a new country and emphasized success in the face of their many sacrifices. This cultural and familial transmission of trauma has led second-generation Vietnamese Americans to face their own forms of intergenerational trauma. These unique forms of mental health and stress are often not addressed due to socio-cultural standards of silence and refusal to seek treatment.

While a majority of these groups were fleeing war and poverty, Cambodian refugees were also fleeing a genocide from the Khmer Rouge. The atrocities of violence, starvation, and torture were common themes experienced by these refugees. Many Cambodian refugee families refused to talk about their trauma which created an isolating environment for the child. This led to a transmission of trauma through the continuing pattern of silence and refusal to acknowledge an issue or seek treatment. There has also been data showing that the children of survivors from regions with higher rates of violence and mortality displayed stronger overall symptoms. The parenting style of caregivers may also contribute to the rate of impact among children of Khmer Rouge survivors. A 2013 study found that among Khmer Rouge survivors with PTSD who engage in role-reversal parenting, a form of parenting where the parent looks to the child for emotional support, there may be higher rates of anxiety and depression in the children.

Indigenous Australians

Many Aboriginal Australian and Torres Strait Islander children were forcibly removed from their parents and placed in Aboriginal reserves and missions in the late 19th and first half of the 20th century. Some were subsequently placed with white families, and this practice continued after people were no longer forcibly removed to reserves. These people became known as the Stolen Generations, and successive generations suffer from intergenerational trauma as a result of this as well as other issues related to the colonisation of Australia, such as dispossession of land, loss of language, etc. Many Aboriginal Australians often face discrimination and resistance when trying to access many services including legal, health, housing, and education. It was found that in 2019, 28% of the total prison population consisted of Aboriginal Australians and Torres Strait Islanders. As of 2022, this percentage has increased to 32% of all prisoners. A study consisting of 43 Aboriginal women found that Aboriginal women often face more struggles when incarcerated compared to their peers. With these struggles Aboriginal Australians face, the trauma is often passed down to their offspring as they are on the receiving end of the discrimination, often are targeted themselves as children, or grow up to face similar of not the same struggles as their family members.

Native/Indigenous Peoples of the Americas

Settler-colonization encompasses a wide range of practices: war, displacement, forced labor, removal of children, relocation, destruction, massacre, genocide, slavery, unintentional and intentional spread of deadly diseases, banning of indigenous language, regulation of marriage, assimilation, eradication of culture, social and spiritual practices. European colonization has, in some instances, involved subjugation of the indigenous peoples of the Americas through violence, ethnic cleansing, forced assimilation, and acculturation. Indian reservations, and harmful policies excluding and oppressing Natives evoked similar responses to trauma as the descendants of Holocaust survivors. In a similar way we find transgenerational trauma in Holocaust survivors we find the same patterns and effects in Indigenous populations and their children and grandchildren.

Due to the effects of settler colonialism, oppression, racism, and other aversive events, Native Americans disproportionately experience adverse childhood experiences as well as health disparities, including high rates of posttraumatic stress, depression, substance abuse, diabetes, and other psychiatric disorders.

Military personnel and their families

Transgenerational trauma is also commonly known as secondary trauma due to the transmission of symptoms that can take place between individuals in close proximity (i.e., children, spouses/partners, and other family members). Transgenerational trauma affects everyone, including those in the military and their families. Patterns of transgenerational trauma can be recognized through the use of a genogram, a family tree that provides a visual representation of hereditary patterns. Specifically, a trauma-focused genogram can be used with those who suffer from acute stress disorder (ASD) and posttraumatic stress disorder (PTSD). Traumatic family patterns could include things such as sexual abuse, domestic violence, and even things such as natural disasters. This type of genogram is inclusive to military personnel in that it takes into consideration the servicemembers' experiences. Some of these considerations include taking into account how long the servicemember served, what their role was, if they were a prisoner of war and if they witnessed the death or injury of others. However, not all military personnel pass down intergenerational trauma.

Military personnel who have seen or participated in abusive acts of violence have been found to transmit the trauma they experienced to their children. Children of these veterans have been found to suffer from behavioral disturbances such as aggression, hyperactivity, and delinquency. Children whose parent was diagnosed with PTSD had a higher rate of anxiety as well as aggression when compared to children of civilians or non-veterans. These children can also have increased depressive symptoms and other PTSD symptoms. However, it has been found that spouses and partners of military veterans can help to buffer the effects of the transmission of trauma symptomology.

This type of intergenerational trauma can be experienced and transmitted not only to children of veterans but also to their spouses/partners, ultimately affecting the whole family unit. Veterans who experienced PTSD or wartime combat stress reaction (CSR) had spouses/partners who experienced increased psychiatric symptoms. These symptoms included feelings of loneliness and having impaired relationships within the family unit and marriage. Much like veterans who suffer from PTSD, their spouses or partners can suffer from many of the same symptoms as well. Spouses or partners of military veterans can experience the avoidance of thoughts, behaviors, and emotions. Spouses or partners may also experience intrusions such as unwanted cognitions and images that may remind them of the negative experiences of their spouse or partner. Common symptoms of emotional distress that spouses may experience are depression and anxiety. These symptoms are intergenerational trauma symptoms that are being passed down from the veteran to the spouse.

Intergenerational trauma can sometimes go unrecognized by the spouse or partner suffering from the transmission of trauma. It sometimes can be difficult for those suffering from intergenerational trauma to recognize that they are emotionally affected, and thus difficult for these individuals to find treatment. Resources such as a genogram can be an excellent way in which an individual can recognize the trauma that has been passed down to them.

When it comes to transgenerational trauma, it can be transmitted quite quickly and can affect many people in which the servicemember has encountered. This also includes mental health workers and primary care physicians with whom the servicemember may be working. Mental health workers and primary care physicians asked to take a survey entitled "Secondary Traumatic Stress Scale" reported that they had trouble sleeping, feeling emotionally numb, and having intrusive thoughts about clients.

Treatment

Mental health workers who are considering working with veterans who suffer from PTSD and other traumatic experiences should have experience working with veterans and servicemembers. Cultural sensitivity is another aspect to consider when working with this population. Understanding the military culture and lifestyle is informative when developing the therapeutic relationship and treatment plans. Another cultural consideration is the family component. This can include the servicemember's actual family or their chosen family. The military can bring on a lot of stress when it comes to the servicemember and his family. These include, moving to different places on short notice, deployment plans constantly changing, difficulty transitioning when coming back from deployment, and many other stressors. Therefore, it is crucial that a mental health worker truly understands military life.

In the case of PTSD, in order to prevent or minimize intergenerational trauma, it is important that the family also seek mental health services. A spouse/partner who is receiving mental health services and is at a better place in their life because of these interventions can help the family unit overall. In a military family, the roles are constantly changing due to the servicemember being on deployment and other factors. The family, as a unit, needs to adjust to the servicemember coming into and out of their lives. With a healthy family unit, the spouse/partner becomes a predicting factor of soldier retention and a functioning family unit. Resiliency can also play a role in this dynamic. A few things can contribute to resiliency in a family unit. These include flexibility/organizational style, the family's belief system, and the communication process. These are important things to look for and identify as they can help in the treatment of intergenerational trauma. Making the family unit strong can help to empower each individual member of the family, and together they can overcome intergenerational trauma within the family. Understanding military culture can help aid families through the process of overcoming intergenerational trauma.

In addition to the genograms, solution-focused brief therapy (SFBT) has been found to be successful with military families. It uses an emphasis on the client's successes and creating small steps that are attainable for the client. This type of therapy uses the client's language and experience to address things systematically within the family. SFBT, together with the genograms, can be informative to both the client and clinician and can help to inform the future of practice. As the genograms can help to give a clear picture as to what the trauma patterns are in the family, SFBT can help to change these patterns and provide the family with a healthier way of living and functioning. This specific type of therapy can help to educate the client and their family as to what exactly has been passed down from previous generations. It can also inform the family as to what is now beginning to be transmitted and can help to change the trajectory in the future and change the family dynamic principles.

Transmission

There are many current transgenerational studies that have been done on adults that have experienced natural disasters or adversities. One study found that the children of torture victims showed more symptoms of anxiety, depression, post-traumatic stress, attention deficits, and behavioral disorders than the comparison group of those who had not experienced the specific trauma. A qualitative study was done on the Brazilian children of Holocaust survivors and proposed a supported model of the transgenerational transmission of traumatic experiences but also one of resilience patterns, which can be transmitted in between generations and developed within generations. According to Froma Walsh, resilience theory suggests that individuals' and families' responses to traumatic experiences is an ever-changing process that involves both exposure to challenges and the development of coping mechanisms that aide in one's ability to overcome such challenges. Regardless of risk, there are also opportunities for the development of resilience via exposure to meaningful resources that support one's ability to overcome adversity. The researchers Cowan, Callaghan, and Richardson studied the impact of early-life adversities on individuals and their descendants. Their research was also consistent with the transmission theory in which their findings revealed that the stress phenotype that was expressed in individuals who experienced the adversity was also observed in children and even grandchildren.

The oppression that black people experienced through slavery and racism has a psychological impact on how they view achievement. In terms of the social aspects, that seems to make it difficult for black people to surpass a certain socioeconomic status threshold, escape a certain neighborhood, or move beyond a certain lifestyle or status.

For Native Americans, past government policy and internal displacements are theorized to have an effect even generations later. The social enforcement of their ostracization causes them to be generally removed from society, to be powerless and uninvited in government, and to be left to fend for themselves. The transgenerational transmission of colonial trauma is also considered a contributing factor in the high rates of mental health difficulties that Native Canadian communities experience. Displacement and maltreatment during colonization had led to negative effects in the children of those who survived such experiences. This is passed down generationally via ongoing social marginalization and lateral violence. The loss of cultures and resulting lack of community cohesion poses a further challenge for groups in resolving transgenerational trauma.

The fetal environment is influenced by the maternal diet. This environmental history can cause the fetal developmental response to change to produce a metabolic phenotype that suits the anticipated environment.

It has been suggested that a mother's mood may influence the fetus, though studies on this have mixed results. It is unclear whether any of the effects persist after birth.

Treatment

Because transgenerational trauma is a form of indirect traumatic exposure, it often goes unrecognized or is misdiagnosed by clinicians. A lack of treatment accessibility can have several consequences such as health, behavioral, and social issues that may persist across an individual's lifespan.

The experience of traumatic stress can modify cognitive, behavioral, and physiological functions, which can increase susceptibility to both mental and physical health issues. Because transgenerational trauma is a form of traumatic stress, it can increase risk for developing psychological disorders such as post-traumatic stress disorder, major depressive disorder, generalized anxiety disorder, schizophrenia, autism, and substance use disorders.

Several therapy modalities have been found to be effective in treating various trauma and stress disorders, such as cognitive behavioral therapy, cognitive processing therapy, prolonged exposure, compassion focused therapy, dialectical behavior therapy, and narrative therapy. Each of these therapies share similar components that are useful in addressing trauma, such as psychoeducation, emotion regulation and processing, cognitive processing and reconstruction, and trauma processing. Given that transgenerational trauma is a unique form of traumatic exposure, such therapy modalities can be effective in reducing its negative long-term effects. However, there are specific components of transgenerational trauma that must be addressed directly despite the modality of therapy chosen. Because the attachment relationship between parent or caregiver and child is a dominant mechanism through which transgenerational trauma is transmitted, treatment should focus on the importance familial and interpersonal patterns relative to the client, and utilize attachment-focused interventions.

Effective treatment for those experiencing transgenerational trauma also focuses on exploring, developing, and maintaining protective factors that can reduce the negative impact of transgenerational trauma. Some protective factors include fostering secure attachment between parent and child, as well as having access to several sources of support (i.e., family, peers, community). One treatment model that places focus on the parent-child relationship is the Intergenerational Trauma Treatment Model (ITTM). The model incorporates several features from existing empirically supported methods of treatment, such as trauma exposure, cognitive processing and reframing, stress management, and parent education. ITTM gives specific attention to the intergenerational nature of traumatic experiences and targets the parent's or caregiver's ability to respond to a child's traumatic experiences. Fostering secure attachment and a supportive home environment can mitigate the potential negative impact of transgenerational trauma.

Other less conventional modalities of therapy have also been found useful in addressing the negative impact of transgenerational trauma. Music therapy has been found to be an effective form of treatment for those who have witnessed or experienced a traumatic event. For example, music therapy has been successfully implemented with military personnel, traumatized refugees, and Holocaust survivors. Specifically, analytic music therapy (AMT) was found to be effective in facilitating a degree of healing through self-exploration that mitigates the negative impact of transgenerational trauma. Trauma healing stories have been suggested as a form of therapy.

Outside the treatment modalities described, several tools and techniques were also found to be helpful in bringing awareness to the effects of transgenerational trauma, as well as decreasing its psychological impact. For example, the Transgenerational Script Questionnaire (TSQ) has been used to compliment psychotherapy sessions as a means of helping to develop consciousness of both the internal and external family system. The TSQ targets transgenerational scripts, which are unconscious systemic patterns that persist in families and groups, and are perpetuated through emotions, beliefs, and behaviors. These scripts are then used to explore a client's implicit and explicit perceptions about their family dynamic and system. In using the TSQ, the clinician can guide the client to separate their ancestors' experiences from their own. In more complex cases of intergenerational trauma, the Transgenerational Trauma and Resilience Genogram (TTRG) can help guide clinicians to better understand and assess the impact of such trauma. The TTRG targets the various components that contribute to the maintenance of transgenerational trauma by implementing an ecosystemic view of trauma, as well as attention to specific sociopolitical concerns. The TTRG maps out the family unit, marking those who have experienced trauma and their experience, as well as relationships between individuals, and patterns of functioning. This process allows for clinicians to better assess the origins and maintaining factors of an individual's experience of transgenerational trauma, which ultimately contributes to a more comprehensive conceptualization of treatment.

In conceptualizing treatment for individuals experiencing transgenerational trauma, it is critical to take into account the ways in which various cultural factors impact how different treatments may be received or perceived. Although the mechanisms through which transgenerational trauma are consistent across cultures, there are variations in the degree of salience regarding sociocultural factors that may exacerbate the effects of transgenerational trauma in different marginalized communities. Additionally, therapists must incorporate a culturally responsive perspective to whichever modality of therapy they chose to implement. It is imperative for therapists to focus on establishing a concrete basis of trust and safety within the therapeutic relationship, as several minoritized groups who have transgenerational trauma may have developed significant mistrust within interpersonal interactions, as well as mistrust of larger organizations or institutions.

Criticism of inherited trauma via epigenetics

One discredited model suggests that a parent's trauma could be inherited through an epigenetic biological mechanism. Although the idea has been widely touted in the media, it is not supported by robust evidence.

Research in rodents suggests that epigenetic changes can be observed in genes associated with the hypothalamic-pituitary-adrenal (HPA) axis, which coordinates the body's stress response system. Non-heritable stress-related epigenetic changes have also been studied in monkeys. However, most epigenetic effects are not transmitted to the next generation, and most transfer of information across generations does not involve epigenetic inheritance.

According to geneticist Kevin Mitchell, "these are, in fact, extraordinary claims, and they are being advanced on less than ordinary evidence." He says "This is a malady in modern science: the more extraordinary and sensational and apparently revolutionary the claim, the lower the bar for the evidence on which it is based, when the opposite should be true." Mitchell adds that many have looked at it as a "get out of genetics free card" and adds, "I think people don't like the idea, some people anyway, that we are born with certain predispositions that are hard to change." He says that experiences are expressed through changes in human neuroanatomy, not patterns of gene expression and says that scientists in this area have contributed to the misleading research in this area: "There is a hype industry around science, which I think is corrosive. And I think scientists are willing participants in it in a way that I find more and more distasteful the older I get, because it does a massive disservice cumulatively to how science is understood by the general public because we have this constant hype."

The biologist Ewan Birney specifically criticized a paper which used a sample size of 32 people to back its claim that children of Holocaust survivors showed evidence of inherited stress. He argues that a mechanism for epigenetic inheritance in humans remains elusive due to the many other influencing factors including "complex societal forces that persist over time", and the fact that human developing females already have all their eggs as a foetus in the womb, and lastly that throughout one individual's life epigenetic influences remain so influential that "epigenetic cell memory" is what cause our genetically identical cells to differentiate into their specific forms. Furthermore, even in mice, where these confounding influences can be controlled, "true trans-generational epigenetic inheritance is extremely rare."

A 2026 review examining the transgenerational inheritance of post-traumatic stress disorder (PTSD) and war-related trauma confirmed these methodological limitations in the human literature. While some studies report DNA methylation variations in stress-related genes (such as FKBP5, NR3C1, NR3C2, and BDNF) among parents or offspring exposed to combat or genocide, the results across the field remain highly inconsistent. The reviewers concluded that genuine epigenetic inheritance and causality cannot be definitively established, as the majority of existing human studies are heavily limited by small sample sizes, cross-sectional designs, and an inability to adequately control for environmental and psychosocial confounding variables.

To address the ongoing controversy and methodological bottlenecks in mammalian models, recent literature has proposed stringent validation frameworks. A 2025 review examining the transgenerational transmission of acquired nervous system phenotypes emphasized that establishing true epigenetic inheritance of trauma requires overcoming severe confounding factors, including postnatal care, the maternal uterine environment, and the global epigenetic reprogramming that naturally erases most DNA methylation during embryonic development. The authors critique the frequent misapplication of the term "transgenerational" in trauma literature, noting that many studies erroneously conflate it with "intergenerational" inheritance—where the F1 fetus or F2 germ cells are directly exposed to the maternal stressor in utero. To definitively prove that behavioral or stress-related traits are inherited epigenetically rather than socially or genetically, it has been proposed that researchers meet strict criteria: the phenotype and corresponding molecular marks must persist into unexposed generations (the F2 generation for paternal exposure, or F3 for maternal), transmission must be isolated to the germ cells, and study designs must utilize absolute controls like cross-fostering and in vitro fertilization to exclude environmental transmission.

Furthermore, human observational cohorts are inevitably confounded by socioeconomic status, culture, and parenting practices, which can easily mimic or obscure epigenetic inheritance. The review also cautions against the ethical and societal risks of attributing psychiatric or cognitive vulnerabilities to ancestral epigenetic trauma; doing so without solid mechanistic proof risks stigmatizing families or inappropriately blaming prior generations.

Anti-capitalism

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