Cerebral basis of posttraumatic stress disorder following the Chernobyl disaster

Мозговые основы посттравматического стрессового расстройства после катастрофы на Чернобыльской АЭС
K. Loganovsky, Nataliya A. Zdanevich
2013-02-27

Chernobyl survivorscerebrovascular pathologyelectroencephalography changesneurocognitive deficitradiation PTSD
BACKGROUND: Whether posttraumatic stress disorder (PTSD) following radiation emergency has psychopathological, neurocognitive, and neurophysiological peculiarities is at issue. OBJECTIVE: The goal was to explore the features and cerebral basis of "radiation" PTSD in the survivors of the Chernobyl accident. Subjects and Methods The cross-sectional study included 241 people, 219 of whom have been diagnosed with PTSD according to the Diagnostic and Statistical Manual of Mental Disorders, 4th ed. (DSM-IV) criteria, among them 115 clean-up workers of the Chernobyl accident (34 with acute radiation sickness), 76 evacuees from the Chernobyl exclusion zone, 28 veterans of the war in Afghanistan, and 22 healthy unexposed individuals. Psychometric examinations, neurocognitive assessments, computerized electroencephalography, and cerebral vascular Doppler were used. RESULTS: "Radiation" PTSD includes "flashforward" phenomena and anticipating stress (projection of fear and danger to the future); somatoform disorders (depression, trait and state anxiety); and neurocognitive deficit (impaired memory and attention, auditory-verbal memory and learning, proactive and retroactive interference, cerebellar and stem symptoms, intellectual changes). The intima-media component, thickness of common carotid arteries, and common and left internal carotid arteries stenosis rates are increased in the liquidators. Changes of bioelectrical brain activity as a decrease of beta- and theta-power, together with an increase of alpha-power, were found in the Chernobyl accident survivors with PTSD. CONCLUSIONS: PTSD following radiation emergency is characterized by comorbidity of psychopathology, neurocognitive deficit, and cerebrovascular pathology with increased risk of cerebral atherosclerosis and stroke. The cerebral basis of this PTSD is proposed to be an abnormal communication between the pyramidal cells of the neocortex and the hippocampus, and deep brain structures. It is recommended that a system of emergency and long-term psychological and psychiatric care be organized for the survivors in Fukushima Daichi, Japan.
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Affected survivors exhibit comorbid somatoform disorders including depression, trait and state anxiety.
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Authors propose the cerebral basis is abnormal communication between neocortical pyramidal cells, the hippocampus, and deep brain structures.
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EEG changes in survivors with PTSD include decreased beta- and theta-power and increased alpha-power.
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Liquidators show increased intima-media component, greater common carotid artery thickness, and higher rates of stenosis in common and left internal carotid arteries.
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Neurocognitive deficits observed include impaired memory and attention, auditory-verbal memory and learning impairments, proactive and retroactive interference, cerebellar and brainstem symptoms, and intellectual changes.
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PTSD after radiation emergency is associated with cerebrovascular pathology and increased risk of cerebral atherosclerosis and stroke.
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PTSD following the Chernobyl radiation emergency features flashforward phenomena and anticipatory stress projecting fear into the future.
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Recommendation: organize emergency and long-term psychological and psychiatric care for survivors of radiation disasters (e.g., Fukushima Daiichi).

Survivors of the Chernobyl accident (including clean-up workers, evacuees, and exposed individuals) with posttraumatic stress disorder

Cerebral basis and clinical features of 'radiation' PTSD, including psychopathological profile, neurocognitive deficits, neurophysiological (EEG) changes, and cerebrovascular pathology (carotid intima-media thickness and stenosis) linked to increased atherosclerosis/stroke risk

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2013-02-27
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K. Loganovsky
Nataliya A. Zdanevich
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