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首页> 外文期刊>Brain research >Brain differences in newborn rats predisposed to helpless and depressive behavior.
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Brain differences in newborn rats predisposed to helpless and depressive behavior.

机译:新生大鼠的大脑差异易导致无助和抑郁行为。

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摘要

Inborn brain differences in metabolic capacity were mapped in congenitally helpless rats, a genetically selected strain predisposed to show helpless and depressive behavior. There are a number of brain regions showing abnormal metabolism in adult congenitally helpless rats. Some of these alterations may be innate while others may be due to environmental factors, such as maternal care and postnatal stress. To identify which brain structures show innate differences, brains of newborn rats from congenitally helpless and non-helpless strains were compared using cytochrome oxidase histochemistry, an endogenous marker of regional metabolic capacity. A smaller subset of regions affected in adults showed significantly less metabolic activity in the newborn brains, including paraventricular hypothalamus, habenula, hippocampus, subiculum, lateral septal nucleus, anterior cingulate cortex, infralimbic cortex, and medial orbitofrontal cortex. A covariance analysis further revealed a striking reduction of functional connectivity in the congenitally helpless brain, including a complete decoupling of limbic forebrain regions from midbrain/diencephalic regions. This pattern of brain metabolism suggests that helplessness vulnerability is linked to altered functioning of limbic networks that are key to controlling the hypothalamic-pituitary-adrenal axis. This implies that vulnerable animals have innate deficits in brain systems that would normally allow them to cope with stress, predisposing them in this manner to more readily develop helpless and depressive behaviors.
机译:先天性无助大鼠绘制了先天性大脑在代谢能力上的差异,这是一种遗传选择的菌株,倾向于表现出无助和抑郁行为。成年先天无助的老鼠中有许多大脑区域显示出异常的代谢。这些改变中的某些可能是先天性的,而另一些则可能是由于环境因素引起的,例如产妇护理和产后压力。为了确定哪些大脑结构显示出先天的差异,使用细胞色素氧化酶组织化学(一种区域代谢能力的内在标记)比较了先天无助和无助品系的新生大鼠的大脑。在成年人中受影响的一小部分区域显示出新生大脑的新陈代谢活动明显减少,包括脑室下丘脑、,管,海马,下丘脑,外侧中隔核,前扣带回皮层,下肢皮层和眶额内侧皮层。协方差分析进一步揭示了先天无助的大脑功能连接的显着降低,包括边缘前脑区域与中脑/脑神经区域的完全解耦。这种大脑新陈代谢的模式表明,无助的脆弱性与边缘网络功能的改变有关,而这是控制下丘脑-垂体-肾上腺轴的关键。这意味着脆弱的动物在大脑系统中具有先天的缺陷,通常使它们能够应对压力,以这种方式使它们更容易产生无助和抑郁的行为。

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