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首页> 外文期刊>Frontiers in neuroendocrinology >The impact from the aftermath of chronic stress on hippocampal structure and function: Is there a recovery?
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The impact from the aftermath of chronic stress on hippocampal structure and function: Is there a recovery?

机译:从慢性胁迫后对海马结构和功能的影响:有恢复吗?

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Chronic stress results in functional and structural changes to the brain and especially the hippocampus. Decades of research have provided insights into the mechanisms by which chronic stress impairs hippocampal-mediated cognition and the corresponding reduction of hippocampal CA3 apical dendritic complexity. Yet, when chronic stress ends and time passes, which we refer to as a "post-stress rest period," hippocampal-mediated spatial memory deficits begin to improve and CA3 apical dendritic arbors increase in complexity. The processes by which the hippocampus improves from a chronically stressed state are not simply the reversal of the mechanisms that produced spatial memory deficits and CA3 apical dendritic retraction. This review will discuss our current understanding of how a chronically stressed hippocampus improves after a post-stress rest period. Untangling the mechanisms that allow for this post-stress plasticity is a critical next step in understanding how to promote resilience in the face of stressors.
机译:慢性应激导致脑和尤其是海马的功能性和结构性变化。几十年的研究已经为慢性胁迫损害海马介导的认知和海马CA3顶端树突复杂性的相应降低的机制提供了洞察力。然而,当慢性应激结束和时间通过时,我们将其称为“后应力休息时间”,海马介导的空间记忆缺陷开始改善,并且Ca3顶端树枝状术术增加复杂性。海马从长期压力状态改善的过程不仅仅是产生空间记忆缺陷和CA3顶端树突缩回的机制的逆转。本综述将讨论我们目前的理解,在重应后休息期后,对长期强调的海马如何提高。解开允许这种压力后可塑性的机制是了解如何在应激源面上促进弹性的关键下一步。

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