22 research outputs found
Human brain evolution and the "Neuroevolutionary Time-depth Principle:" Implications for the Reclassification of fear-circuitry-related traits in DSM-V and for studying resilience to warzone-related posttraumatic stress disorder.
The DSM-III, DSM-IV, DSM-IV-TR and ICD-10 have judiciously minimized discussion of etiologies to distance clinical psychiatry from Freudian psychoanalysis. With this goal mostly achieved, discussion of etiological factors should be reintroduced into the Diagnostic and Statistical Manual of Mental Disorders, Fifth Edition (DSM-V). A research agenda for the DSM-V advocated the "development of a pathophysiologically based classification system". The author critically reviews the neuroevolutionary literature on stress-induced and fear circuitry disorders and related amygdala-driven, species-atypical fear behaviors of clinical severity in adult humans. Over 30 empirically testable/falsifiable predictions are presented. It is noted that in DSM-IV-TR and ICD-10, the classification of stress and fear circuitry disorders is neither mode-of-acquisition-based nor brain-evolution-based. For example, snake phobia (innate) and dog phobia (overconsolidational) are clustered together. Similarly, research on blood-injection-injury-type-specific phobia clusters two fears different in their innateness: 1) an arguably ontogenetic memory-trace-overconsolidation-based fear (hospital phobia) and 2) a hardwired (innate) fear of the sight of one's blood or a sharp object penetrating one's skin. Genetic architecture-charting of fear-circuitry-related traits has been challenging. Various, non-phenotype-based architectures can serve as targets for research. In this article, the author will propose one such alternative genetic architecture. This article was inspired by the following: A) Nesse's "Smoke-Detector Principle", B) the increasing suspicion that the "smooth" rather than "lumpy" distribution of complex psychiatric phenotypes (including fear-circuitry disorders) may in some cases be accounted for by oligogenic (and not necessarily polygenic) transmission, and C) insights from the initial sequence of the chimpanzee genome and comparison with the human genome by the Chimpanzee Sequencing and Analysis Consortium published in late 2005. Neuroevolutionary insights relevant to fear circuitry symptoms that primarily emerge overconsolidationally (especially Combat related Posttraumatic Stress Disorder) are presented. Also introduced is a human-evolution-based principle for clustering innate fear traits. The "Neuroevolutionary Time-depth Principle" of innate fears proposed in this article may be useful in the development of a neuroevolution-based taxonomic re-clustering of stress-triggered and fear-circuitry disorders in DSM-V. Four broad clusters of evolved fear circuits are proposed based on their time-depths: 1) Mesozoic (mammalian-wide) circuits hardwired by wild-type alleles driven to fixation by Mesozoic selective sweeps; 2) Cenozoic (simian-wide) circuits relevant to many specific phobias; 3) mid Paleolithic and upper Paleolithic (Homo sapiens-specific) circuits (arguably resulting mostly from mate-choice-driven stabilizing selection); 4) Neolithic circuits (arguably mostly related to stabilizing selection driven by gene-culture co-evolution). More importantly, the author presents evolutionary perspectives on warzone-related PTSD, Combat-Stress Reaction, Combat-related Stress, Operational-Stress, and other deployment-stress-induced symptoms. The Neuroevolutionary Time-depth Principle presented in this article may help explain the dissimilar stress-resilience levels following different types of acute threat to survival of oneself or one's progency (aka DSM-III and DSM-V PTSD Criterion-A events). PTSD rates following exposure to lethal inter-group violence (combat, warzone exposure or intentionally caused disasters such as terrorism) are usually 5-10 times higher than rates following large-scale natural disasters such as forest fires, floods, hurricanes, volcanic eruptions, and earthquakes. The author predicts that both intentionally-caused large-scale bioevent-disasters, as well as natural bioevents such as SARS and avian flu pandemics will be an exception and are likely to be followed by PTSD rates approaching those that follow warzone exposure. During bioevents, Amygdala-driven and locus-coeruleus-driven epidemic pseudosomatic symptoms may be an order of magnitude more common than infection-caused cytokine-driven symptoms. Implications for the red cross and FEMA are discussed. It is also argued that hospital phobia as well as dog phobia, bird phobia and bat phobia require re-taxonomization in DSM-V in a new "overconsolidational disorders" category anchored around PTSD. The overconsolidational spectrum category may be conceptualized as straddling the fear circuitry spectrum disorders and the affective spectrum disorders categories, and may be a category for which Pitman's secondary prevention propranolol regimen may be specifically indicated as a "morning after pill" intervention. Predictions are presented regarding obsessive-compulsive disorder (OCD) (e.g., female-pattern hoarding vs. male-pattern hoarding) and "culture-bound" acute anxiety symptoms (taijin-kyofusho, koro, shuk yang, shook yong, suo yang, rok-joo, jinjinia-bemar, karoshi, gwarosa, Voodoo death). Also discussed are insights relevant to pseudoneurological symptoms and to the forthcoming Dissociative-Conversive disorders category in DSM-V, including what the author terms fright-triggered acute pseudo-localized symptoms (i.e., pseudoparalysis, pseudocerebellar imbalance, psychogenic blindness, pseudoseizures, and epidemic sociogenic illness). Speculations based on studies of the human abnormal-spindle-like, microcephaly-associated (ASPM) gene, the microcephaly primary autosomal recessive (MCPH) gene, and the forkhead box p2 (FOXP2) gene are made and incorporated into what is termed "The pre-FOXP2 Hypothesis of Blood-Injection-Injury Phobia." Finally, the author argues for a non-reductionistic fusion of "distal (evolutionary) neurobiology" with clinical "proximal neurobiology," utilizing neurological heuristics. It is noted that the value of re-clustering fear traits based on behavioral ethology, human-phylogenomics-derived endophenotypes and on ontogenomics (gene-environment interactions) can be confirmed or disconfirmed using epidemiological or twin studies and psychiatric genomics
Freeze, Flight, Fight, Fright, Faint: Adaptationist Perspectives on the Acute Stress Response Spectrum
This article reviews the existing evolutionary perspectives on the acute stress response habitual faintness and blood-injection-injury type-specific phobia (BIITS phobia). In this article, an alternative evolutionary perspective, based on recent advances in evolutionary psychology, is proposed. Specifically, that fear-induced faintness (eg, fainting following the sight of a syringe, blood, or following a trivial skin injury) is a distinct Homo sapiens-specific extreme-stress survival response to an inescapable threat. The article suggests that faintness evolved in response to middle paleolithic intra-group and inter-group violence (of con-specifics) rather than as a pan-mammalian defense response, as is presently assumed. Based on recent literature, freeze, flight, fight, fright, faint provides a more complete description of the human acute stress response sequence than current descriptions. Faintness, one of three primary physiological reactions involved in BIITS phobia, is extremely rare in other phobias. Since heritability estimates are higher for faintness than for fears or phobias, the author suggests that trait-faintness may be a useful complement to trait-anxiety as an endophenotype in research on the human fear circuitry. Some implications for the forthcoming Diagnostic and Statistical Manual of Mental Disorders, Fifth Edition as well as for clinical, health services, and transcriptomic research are briefly discusse
Evidence Based Complementary Intervention for Insomnia
Increasing scientific evidence point to a non-pharmacological
complementary treatment for insomnia: white noise. Its presentation
has been shown to induce sleep in human neonates and adults,
probably by reducing the signal-to-noise ratio of ambient sound.
White noise may be a simple, safe, cost-effective alternative to
hypnotic medication in many psychiatric disorders, especially acute
stress disorder and PTSD
Anxiety and Posttraumatic Stress Disorder in the Context of Human Brain Evolution:A Role for Theory in DSM-V?
The “hypervigilance, escape, struggle, tonic immobility”\ud
evolutionarily hardwired acute peritraumatic response\ud
sequence is important for clinicians to understand. Our\ud
commentary supplements the useful article on human\ud
tonic immobility (TI) by Marx, Forsyth, Gallup, Fusé and Lexington (2008). A hallmark sign of TI is peritraumatic\ud
tachycardia, which others have documented as a\ud
major risk factor for subsequent posttraumatic stress\ud
disorder (PTSD). TI is evolutionarily highly conserved\ud
(uniform across species) and underscores the need for\ud
DSM-V planners to consider the inclusion of evolution\ud
theory in the reconceptualization of anxiety and PTSD.\ud
We discuss the relevance of evolution theory to the\ud
DSM-V reconceptualization of acute dissociativeconversion\ud
symptoms and of epidemic sociogenic disorder(epidemic “hysteria”). Both are especially in need of attention in light of the increasing threat of terrorism\ud
against civilians. We provide other pertinent examples.\ud
Finally, evolution theory is not ideology driven (and\ud
makes testable predictions regarding etiology in “both\ud
directions”). For instance, it predicted the unexpected\ud
finding that some disorders conceptualized in DSM-IV-TR as innate phobias are conditioned responses and thus better conceptualized as mild forms of PTSD. Evolution\ud
theory may offer a conceptual framework in\ud
DSM-V both for treatment and for research on psychopathology.\u
Testing the Paleolithic-human-warfare hypothesis of blood-injectiion phobia in the Balitmore ECA Follow-up Study-Towards a more etiologically-based conceptualization for DSM-V
Objective:
The
research
agenda
for
the
fifth
edition
of
the
Diagnostic
and
Statistical
Manual
of
Mental
Disorders
(DSM-V)
has
emphasized
the
need
for a
more
etiologically-based
classification
system,
especially
for
stress-induced
and
fear-circuitry
disorders.
Testable
hypotheses
based
on
threats
to
survival
during
particular
segments
of
the
human
era
of
evolutionary
adaptedness
(EEA)
may
be
useful
in
developing a
brain-evolution-based
classification
for
the
wide
spectrum
of
disorders
ranging
from
disorders
which
are
mostly
overconsolidationally
such
as
PTSD,
to
fear-circuitry
disorders
which
are
mostly
innate
such
as
specific
phobias.
The
recently
presented
Paleolithic-human-warfare
hypothesis
posits
that
blood–injection
phobia
can
be
traced
to a
“survival
(fitness)
enhancing”
trait,
which
evolved
in
some
females
of
reproductive-age
during
the
millennia
of
intergroup
warfare
in
the
Paleolithic
EEA.
The
study
presented
here
tests
the
key a
priori
prediction
of
this
hypothesis—that
current
blood–injection
phobia
will
have
higher
prevalence
in
reproductive-age
women
than
in
post-menopausal
women.
Method:
The
Diagnostic
Interview
Schedule
(version
III-R)
,
which
included a
section
on
blood
and
injection
phobia,
was
administered
to
1920
subjects
in
the
Baltimore
ECA
Follow-up
Study.
Results:
Data
on
BII
phobia
was
available
on
1724
subjects
(1078
women
and
646
males)
.
The
prevalence
of
current
blood–
injection
phobia
was
3.3%
in
women
aged
27–49
and
1.1%
in
women
over
age
50
(OR
3.05,
95%
CI
1.20–7.73)
.
[The
corresponding
figures
for
males
were
0.8%
and
0.7%
(OR
1.19,
95%
CI
0.20–7.14)]
.
Conclusions:
This
epidemiological
study
provides
one
source
of
support
for
the
Paleolithic-human-warfare
(Paleolithic-threat)
hypothesis
regarding
the
evolutionary
(distal)
etiology
of
bloodletting-related
phobia,
and
may
contribute
to a
more
brain-
evolution-based
re-conceptualization
and
classification
of
this
fear
circuitry-related
trait
for
the
DSM-V.
In
addition,
the
finding
reported
here
may
also
stimulate
new
research
directions
on
more
proximal
mechanisms
which
can
lead
to
the
development
of
evidence-based
psychopharmacological
preventive
interventions
for
this
common
and
sometimes
disabling
fear-circuitry
disorder
The human fear-circuitry and fear-induced fainting in healthy individuals The paleolithic-threat hypothesis
The Paleolithic-Threat
hypothesis reviewed here posits
that habitual efferent fainting can
be traced back to fear-induced
allelic polymorphisms that were
selected into some genomes of
anatomically, mitochondrially, and
neurally modern humans (Homo
sapiens sapiens) in the Mid-Paleolithic because of the survival
advantage they conferred during
periods of inescapable threat. We
posit that during Mid-Paleolithic
warfare an encounter with “a
stranger holding a sharp object”
was consistently associated with
threat to life. A heritable hard-
wired or firm-wired (prepotentiated) predisposition to abruptly
increase vagal tone and collapse
flaccidly rather than freeze or
attempt to flee or fight in response
to an approaching sharp object, a
minor injury, or the sight of blood,
polymorphism for the hemodynamically “paradoxical” flaccid-
immobility in response to these
stimuli may have increased some
non-combatants’ chances of survival. This is consistent with the
unusual age and sex pattern of
fear-induced fainting. The Paleolithic-Threat hypothesis also predicts a link to various hypo-androgenic states (e.g. low dehydroxyepiandrosterone-sulfate. We offer
five predictions testable via epidemiological, clinical, and ethological/primatological methods. The
Paleolithic-Threat hypothesis has
implications for research in the
aftermath of man-made disasters,
such as terrorism against civilians,
a traumatic event in which this
hypothesis predicts epidemics of
fear-induced faintin