.
Flor-Henry P: Cerebral Basis of Psychopathology. Boston, John Wright, PSG Inc, 1983
.
Joseph R: Neuropsychiatry, Neuropsychology, and Clinical Neuroscience: Emotion, Evolution, Cognition, Language, Memory, Brain Damage, and Abnormal Behaviour, 2nd ed. Baltimore, Williams & Wilkins, 1996
.
Gruzelier JH: Functional neuropsychophysiological asymmetry in schizophrenia: a review and reorientation. Schizophr Bull 1999; 25:4—32
.
Hering-Hanit R, Achiron R, Lipitz S, et al: Asymmetry of fetal cerebral hemispheres: in utero ultrasound study. Arch Dis Child Fetal Neonatal Ed 2001; 85:F194—196
.
Teicher MH, Andersen SL, Glod CA, et al: Neuropsychiatric disorders of childhood and adolescence, in The American Psychiatric Press Textbook of Neuropsychiatry, 3rd ed. Edited by Yudofsky SC, Hales RE. Washington, DC, American Psychiatric Press, 1997, pp 903—940
.
Shirakawa O, Kitamura N, Lin XH, et al: Abnormal neurochemical asymmetry in the temporal lobe of schizophrenia. Prog Neuropsychopharmacol Biol Psychiatry 2001; 25:867—877
.
ICRP Publication 49: Developmental Effects of Irradiation on the Brain of the Embryo and Fetus: A Report of a Task Group of Committee 1 of the International Commission on Radiological Protection. Annals of the ICRP, vol 16, no 4. Edited by Thorne MC. Oxford, UK, Pergamon Press, 1986
.
Otake M, Schull WJ: Radiation-related brain damage and growth retardation among the prenatally exposed atomic bomb survivors. Int J Radiat Biol 1988; 74:159—171
.
Schull WJ, Otake M: Cognitive function and prenatal exposure to ionizing radiation. Teratology 1999; 59:222—226
.
Otake M, Schull WJ, Lee S: Threshold for radiation-related severe mental retardation in prenatally exposed A-bomb survivors: a re-analysis. Int J Radiat Biol 1996; 70:755—763
.
Imamura Y, Nakane Y, Ohta Y, et al: Lifetime prevalence of schizophrenia among individuals prenatally exposed to atomic bomb radiation in Nagasaki City. Acta Psychiatrica Scandinavia 1999; 100:344—349
.
Oshima I, Naito K, Tokunaga J: [Evaluation of effectiveness of community mental health system in Kawasaki City—a comparison with national statistics.] Nippon Koshu Eisei Zasshi 1998; 45:722—731 (Japanese)
.
World Health Organization: Health Consequences of the Chernobyl Accident. Results of the IPHECA Pilot Projects and Related National Programmes. Geneva, World Health Organization, 1996
.
Nyagu AI, Loganovsky KN, Loganovskaja TK: Psychophysiolologic aftereffects of prenatal irradiation. Int J Psychophysiol 1998; 30:303—311
.
Kozlova IÀ, Nyagu ÀI, Korolyov VD: [An influence of radiation to the mental health of children.] Zh Nevrol Psikhiatr Im S S Korsakova 1999; 99:12—15 (Russian)
.
Kolominsky Y, Igumnov S, Drozdovitch V: The psychological development of children from Belarus exposed in the prenatal period to radiation from the Chernobyl atomic power plant. J Child Psychol Psychiatry 1999; 40:299—305
.
Igumnov S, Drozdovitch V: The intellectual development, mental and behavioural disorders in children from Belarus exposed in utero following the Chernobyl accident. Eur Psychiatry 2000; 15:244—253
.
Igumnov SA, Drozdovitch VV: Antenatal exposure following the Chernobyl accident: neuropsychiatric aspects. International Journal of Radiation Medicine 2004; 6:108—115
.
Bromet EJ, Goldgaber D, Carlson G, et al: Children’s well-being 11 years after the Chernobyl catastrophe. Arch Gen Psychiatry 2000; 57:563—571
.
Litcher L, Bromet EJ, Carlson G, et al: School and neuropsychological performance of evacuated children in Kyiv 11 years after the Chernobyl disaster. J Child Psychol Psychiatry 2000; 41:291—299
.
Nyagu AI, Loganovsky KN, Nechayev S, et al: Potential effects of prenatal brain irradiation as a result of the Chernobyl accident in Ukraine, in Abstracts of International Workshop on The French-German Initiative for Chernobyl Results and their Implication for Man and Environment, October 5—6, 2004. Kyiv, International Chernobyl Centre, 2004, p 38
.
Nyagu AI, Loganovsky KN, Pott-Born R, et al: Potential effects of prenatal brain irradiation as a result of the Chernobyl accident, in Publications on Project 3 "Health Effects on the Chernobyl Accident" of the French-German Initiative for Chernobyl, 2004. (Ukraine) Available at http://www.icc.gov.ua/eng/1Publications/medicine/SP-%203.4.1%20.doc
.
Nyagu AI, Loganovsky KN, Pott-Born R, et al: Effects of prenatal brain irradiation as a result of the Chernobyl accident. International Journal of Radiation Medicine 2004; 6:91—107
.
World Health Organization: Health Effects of the Chernobyl Accident and Special Health Care Programmes. Report of the UN Chernobyl Forum Expert Group "Health" (EGH). Geneva, World Health Organization, 2006. Available at http://www.iaea.org/NewsCenter/Focus/Chernobyl/index.shtml
.
Kieler H, Cnattingius S: Sinistrality: a side-effect of prenatal sonography: a comparative study of young men. Epidemiology 2001; 12:618—623
.
Soto-Moyano R, Alarcon S, Hernandez A, et al: Prenatal malnutrition-induced functional alterations in callosal connections and in interhemispheric asymmetry in rats are prevented by reduction of noradrenaline synthesis during gestation. J Nutr 1998; 128:1224—1231
.
Jones NA, Field N, Davalos M, et al: Greater right frontal EEG asymmetry and nonemphathic behavior are observed in children prenatally exposed to cocaine. Int J Neurosci 2004; 114:459—480
.
Alonso SJ, Navarro E, Santana C, et al: Motor lateralization, behavioral despair and dopaminergic brain asymmetry after prenatal stress. Pharmacol Biochem Behav 1997; 58:443—448
.
Fride E, Weinstock M: Prenatal stress increases anxiety related behavior and alters cerebral lateralization of dopamine activity. Life Sci 1988; 42:1059—1065
.
Kanno O: Electroencephalographic study of 137 patients with thalidomide embryopathy. Jpn J Psychiatry Neurol 1987; 41:197—205
.
Schonfeld AM, Mattson SN, Lang AR, et al: Verbal and nonverbal fluency in children with heavy prenatal alcohol exposure. J Stud Alcohol 2001; 62:239—246
.
Sowell ER, Thompson PM, Peterson BS, et al: Mapping cortical gray matter asymmetry patterns in adolescents with heavy prenatal alcohol exposure. Neuroimage 2002; 17:1807—1819
.
Loganovskaja TK, Loganovsky KN: Brain laterality and psychopathology in children irradiated in utero, in Abstracts of the 4th International Laterality and Psychopathology Conference, London, June 19—21, 1997. Edited by Gruzelier JH, Saugstad LF. London, Charring Cross and Westminster Medical School, University of London, 1997, p 34
.
Loganovskaja TK, Loganovsky KN: Left hemisphere vulnerability of prenatally irradiated children. Int J Psychophysiol 1998; 30:156—157
.
Loganovskaja TK, Loganovsky KN: EEG, cognitive and psychopathological abnormalities in children irradiated in utero. Int J Psychophysiol 1999; 34:213—224
.
Loganovskaja T, Loganovsky K: Emotional disorders and brain asymmetry in children irradiated in utero. J Neuropsychiatry Clin Neurosci 2000; 12:139
.
Loganovskaja T, Loganovsky K: Visual vertex potential and psychopathology of children irradiated in utero. Int J Psychophysiol 2000; 35:69
.
Schull W, Otake M, Yoshimaru H: Effect on intelligence test score of prenatal exposure to ionising radiation in Hiroshima and Nagasaki: a comparison of the T65DR and DS86 dosimetry systems. Technical Report Number RERF 3—88. Hiroshima, Radiation Effects Research Foundation, 1988
.
ICRP Publication 88: Doses to the Embryo and Fetus from Intake Radionuclides by the Mother. Ann ICRP 2001; 31:19—515
.
Likhtarev IA, Chumak VV, Repin VS: Retrospective reconstruction of individual and collective external gamma-doses of population evacuated after the Chernobyl accident. Health Physics 1994; 66:10
.
Repin VS: [Radiation and Hygienic Meaning of Sources and Irradiation Doses of Population of the 30-kilometer Zone after the Chernobyl NPP Accident (Problems of Reconstruction, Risk Assessment).] Doctoral Dissertation. Kiev, Institute of Medicine of Labor, 1996 (Russian)
.
Repin VS, Nechaev Syu, Frizuk MA: [Estimation of influence of a stage of pregnancy on formation of doses on body and tissues of a foetus. Development of model parameters of irradiation of a foetus after the Chernobyl NPP accident,] in Chernobyl-96, Proceedings of the V International Conference on the Results of 10-years Cleaning Up Works of the Chernobyl Accident Consequences. Edited by Arkhipov NP. Kyiv, Silver Polygraph Publishing House, 1996, pp 157—158 (Russian)
.
Waldrop MF, Pedersen FA, Bell RQ: Minor physical anomalies and behavior in preschool children. Child Dev 1968; 39:391—400
.
Ovsiew F: Bedside neuropsychiatry: eliciting the clinical phenomena of neuropsychiatric illness, in The American Psychiatric Press Textbook of Neuropsychiatry, 3rd ed. Edited by Yudofsky SC, Hales RE. Washington, DC, American Psychiatric Press, 1997, pp 121—164
.
Szatmari P, Taylor DC: The neurological examination in child psychiatry: a review of its uses. Can J Psychiatry 1984; 29:155—162
.
Szatmari P, Taylor DC: Overflow movements and behavior problems: scoring and using a modification of Fogs’ test. Dev Med Child Neurol 1984; 26:297—310
.
Johnk K, Kuhtz-Buschbeck JP, Stolze H, et al: Assessment of sensorimotor functions after traumatic brain injury (TBI) in childhood—methodological aspects. Restor Neurol Neurosci 1999; 14:143—152
.
Kerdo I: [An index for the evaluation of vegetative tonus calculated from the data of blood circulation.] Acta Neuroveg (Wien) 1966; 29:250—268 (German)
.
Wechsler D: Manual for the Wechsler Intelligence Scale for Children, 3rd ed. London, Psychological Corporation, 1992
.
Gilbukh YuZ (ed): [Measurement of Intelligence of Children: Manual for Practical Psychologists. part 1. Human Intelligence and Its Measurement: Theory and Practice.] Kiev, Research Institute of Psychology, Academy of Pedagogic Sciences of Ukraine, 1992 (Russian)
.
Bornstein RA, Matarazzo JD: Wechsler VIQ versus PIQ differences in cerebral dysfunction: a literature review with emphasis on sex differences. J Clin Neuropsychol 1982; 4:319—334
.
Rutter M, Hersov L: Child and Adolescent Psychiatry: Modern Approaches, 2nd ed. Oxford, UK, Blackwell Scientific Publications, 1985
.
Rutter MA: A children’s behaviour questionnaire for completion by teachers: preliminary findings. J Child Psychol Psychiatry 1967; 8:1—11
.
Loganovskaja TK: [Mental Disorders in Children Exposed to Prenatal Irradiation as a result of the Chernobyl Accident]. Doctoral Dissertation. Research Centre for Radiation Medicine of Academy of Medical Sciences of Ukraine, 2005 (Ukrainian)
.
Horowitz MJ, Wilner N, Alvarez W: Impact of Events Scale: a measure of objective stress. Psychosom Med 1979; 41:209—218
.
Snaith RP, Constantopoulos AA, Jardine MY, et al: A clinical scale for the self-assessment of irritability. Br J Psychiatry 1978; 132:164—171
.
Zung WWK, Wonnacott TH: Treatment prediction in depression using a self-rating scale. Biol Psychiatry 1970; 2:321—329
.
Goldberg D, Williams P: A Users Guide to the General Health Questionnaire. London, NFER-Nelson, 1988
.
Wechsler D: Administration Manual for the Wechsler Adult Intelligence Scale, 3rd UK ed. (WAIS—IIIUK). London, Psychological Corporation, 1997
.
Loganovskaja TK: Psychophysiological pattern of acute prenatal exposure to ionizing radiation as a result of the Chernobyl accident. Int J Psychophysiol 2004; 54:95—96
.
Rakic P: Development of the primate cerebral cortex, in Child and Adolescent Psychiatry. Edited by Lewis M. Baltimore, Williams and Wilkins, 1994, pp 11—28
.
Zecevic N: Synaptogenesis in layer-I of the human cerebral cortex in the first-half of gestation. Cereb Cortex 1998; 8:245—252
.
McCartney G, Hepper P: Development of lateralized behaviour in the human fetus from 12 to 27 weeks’ gestation. Dev Med Child Neurol 1999; 41:83—86
.
Loganovskaja TK, Nechayev S: [Psychophysiological effects in prenatally exposed children and adolescents as a result of the Chernobyl accident.] World of Medicine 2004; 4:130—137 (Ukrainian)
.
Franck N, Georgieff N: Neurodevelopmental hypothesis of schizophrenia. Rev Prat 2002; 52:1202—1207
.
Koles ZJ, Lind JC, Flor-Henry P: A source-imaging (low-resolution electromagnetic tomography) study of the EEGs from unmedicated men with schizophrenia. Psychiatry Res 2004; 130:171—190
.
Loganovsky KN: [Neurological and psychopathological syndromes in the follow-up period after exposure to ionizing radiation.] Zh Nevrol Psikhiatr Im S S Korsakova 2000; 100:15—21 (Russian)
.
Loganovsky KN: [Mental Disorders at Exposure to Ionising Radiation as a Result of the Chernobyl Accident: Neurophysiological Mechanisms, Unified Clinical Diagnostics, Treatment]. Doctoral Dissertation. Kiev, Research Centre for Radiation Medicine of Academy of Medical Sciences of Ukraine, 2002 (Ukrainian)
.
Loganovsky KN, Yuryev KL: EEG patterns in persons exposed to ionizing radiation as a result of the Chernobyl accident, part 1: conventional EEG analysis. J Neuropsychiatry Clin Neurosci 2001; 13:441—458
.
Loganovsky KN, Yuryev KL: EEG patterns in persons exposed to ionizing radiation as a result of the Chernobyl accident, part 2: quantitative EEG analysis in patients who had acute radiation sickness. J Neuropsychiatry Clin Neurosci 2004; 16:70—82
.
Antipchuk KY: [Neuropsychologic method in diagnostic of radiation brain disorders]. Ukrainian Medical Journal 2004; 3:121—128 (Ukrainian)
.
Antipchuk KY: [Clinical-Neuropsychological Characteristic of Organic Mental Disorders in Remote Period of Exposure to Ionizing Radiation as a result of the Chernobyl Accident]. Doctoral Dissertation. Kiev, Research Centre for Radiation Medicine of Academy of Medical Sciences of Ukraine, 2005 (Ukrainian)
.
Bomko MA: Morphometric neurovisual characteristic of organic brain damage in clean-up workers of the consequences of the Chernobyl accident in remote period of exposure to ionizing radiation. Int J Psychophysiol 2004; 54:119
.
Bomko MO: [Structural-functional Characteristic of Organic Mental Disorders in Clean-up Workers of the Consequences of the Chernobyl Accident in Remote Period of Exposure to Ionizing Radiation]. Doctoral Dissertation. Kiev, Research Centre for Radiation Medicine of Academy of Medical Sciences of Ukraine, 2005 (Ukrainian)
.
Copeland DR, deMoor C, Moore BD, et al: Neurocognitive development of children after a cerebellar tumors in infancy: a longitudinal study. J Clin Oncol 1999; 17:3476—3486
.
Armstrong CL, Corn BW, Ruffer JE, et al: Radiotherapeutic effects on brain function: double dissociation of memory system. Neuropsychiatry Neuropsychol Behav Neurol 2000; 13:101—111
.
Cheung M, Chan AS, Law SC, et al: Cognitive function of patients with nasopharyngeal carcinoma with and without temporal lobe radionecrosis. Arch Neurol 2000; 57:1347—1352
.
Kieffer-Renaux V, Bulteau C, Grill J, et al: Patterns of neuropsychological deficits in children with medulloblastoma according to craniospatial irradiation dose. Dev Med Child Neurol 2000; 42:741—745
.
Loganovsky KN, Loganovskaja TK: Schizophrenia spectrum disorders in persons exposed to ionizing radiation as a result of the Chernobyl accident. Schizophr Bull 2000; 26:751—773
.
Loganovsky KN, Volovik SV, Manton KG, et al: Whether ionizing radiation is a risk factor for schizophrenia spectrum disorders? World J Biological Psychiatry 2005; 6:212—230
.
Korr H, Thorsten Rohde H, Benders J, et al: Neuron loss during early adulthood following prenatal low-dose X-irradiation in the mouse brain. Int J Radiat Biol 2001; 77:567—580
.
Gelowitz DL, Rakic P, Goldman-Rakic PS, et al: Craniofacial dysmorphogenesis in fetally irradiated nonhuman primates: implications for the neurodevelopmental hypothesis of schizophrenia. Biol Psychiatry 2002; 52:716—720
.
Schindler MK, Wang L, Selemon LD, et al: Abnormalities of thalamic volume and shape detected in fetally irradiated rhesus monkeys with high dimensional brain mapping. Biol Psychiatry 2002; 51:827—837
.
Schmitz C, Grolms N, Hof PR, et al: Altered spatial arrangement of layer V pyramidal cells in the mouse brain following prenatal low-dose X-irradiation: a stereological study using a novel three-dimensional analysis method to estimate the nearest neighbor distance distributions of cells in thick sections. Cereb Cortex 2002; 12:954—960
.
Schmitz S, Born M, Dolezel P, et al: Prenatal protracted irradiation at very low dose rate induces severe neuronal loss in rat hippocampus and cerebellum. Neuroscience 2005; 130:935—948
.
Selemon LD, Wang L, Nebel MB, et al: Direct and indirect effects of fetal irradiation on cortical gray and white matter volume in the macaque. Biol Psychiatry 2005; 57:83—90