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生命早期两个阶段的杏仁核或腹侧海马体损伤对后期的旷场行为有不同影响;一种神经发育性精神病理障碍的动物模型。

Amygdala or ventral hippocampal lesions at two early stages of life differentially affect open field behaviour later in life; an animal model of neurodevelopmental psychopathological disorders.

作者信息

Daenen Elisabeth W P M, Wolterink Gerrit, Gerrits Mirjam A F M, Van Ree Jan M

机构信息

Department of Pharmacology, Division of Pharmacology and Anatomy Rudolf Magnus Institute for Neurosciences, University Medical Center Utrecht, PO Box 85060, 3508, AB, Utrecht, The Netherlands.

出版信息

Behav Brain Res. 2002 Apr 1;131(1-2):67-78. doi: 10.1016/s0166-4328(01)00350-3.

Abstract

Psychiatric disorders like schizophrenia or autism are thought to result from disruption of the normal pattern of brain development. Abnormalities in the amygdaloid complex and hippocampus have been reported in these disorders. In the present study rats were lesioned in the amygdala or ventral hippocampus on day 7 of life (immature brain) or day 21 of life (almost mature brain) and open field behaviour was determined later in life before and after puberty. Lesioning on day 7 resulted in behavioural changes, interpreted as locomotor stereotypy and decreased anxiety in case of amygdala or hippocampus, respectively. These effects were more profoundly present after puberty. Lesioning on day 21 did not result in these behavioural changes, which subscribes to the importance of the stage of brain maturation on functional development. The results suggest that the behavioural changes in rats lesioned on day 7 may due to a malfunctioning of structures connected to the amygdala or ventral hippocampus. Brain lesions made on day 7 of life may serve as a potential model of psychopathological neurodevelopmental disorders.

摘要

精神分裂症或自闭症等精神疾病被认为是由大脑发育的正常模式中断所致。在这些疾病中,杏仁核复合体和海马体已被报道存在异常。在本研究中,在出生后第7天(未成熟大脑)或第21天(几乎成熟大脑)对大鼠的杏仁核或腹侧海马体进行损伤,随后在青春期前后测定其旷场行为。在出生后第7天进行损伤会导致行为改变,分别表现为杏仁核或海马体损伤时的运动刻板行为和焦虑降低。这些影响在青春期后更为明显。在出生后第21天进行损伤并未导致这些行为改变,这证实了大脑成熟阶段对功能发育的重要性。结果表明,出生后第7天损伤的大鼠的行为改变可能是由于与杏仁核或腹侧海马体相连的结构功能失调所致。出生后第7天造成的脑损伤可能作为精神病理神经发育障碍的潜在模型。

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