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Altered Neural Networks in the Papez Circuit: Implications for Cognitive Dysfunction after Cerebral Ischemia

机译:帕皮兹电路中的神经网络改变:对脑缺血后认知功能障碍的影响。

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摘要

Cerebral ischemia remains a leading cause of mortality worldwide. Although the incidence of death has decreased over the years, surviving patients may suffer from long-term cognitive impairments and have an increased risk for dementia. Unfortunately, research aimed toward developing therapies that can improve cognitive outcomes following cerebral ischemia has proved difficult given the fact that little is known about the underlying processes involved. Nevertheless, mechanisms that disrupt neural network activity may provide valuable insight, since disturbances in both local and global networks in the brain have been associated with deficits in cognition. In this review, we suggest that abnormal neural dynamics within different brain networks may arise from disruptions in synaptic plasticity processes and circuitry after ischemia. This discussion primarily concerns disruptions in local network activity within the hippocampus and other extra-hippocampal components of the Papez circuit, given their role in memory processing. However, impaired synaptic plasticity processes and disruptions in structural and functional connections within the Papez circuit have important implications for alterations within the global network, as well. Although much work is required to establish this relationship, evidence thus far suggests there is a link. If pursued further, findings may lead toward a better understanding of how deficits in cognition arise, not only in cerebral ischemia, but in other neurological diseases as well.
机译:脑缺血仍然是全球范围内死亡的主要原因。尽管这些年来死亡的发生率有所下降,但是幸存的患者可能会遭受长期的认知障碍,并增加患痴呆症的风险。不幸的是,鉴于人们对所涉及的潜在过程知之甚少,旨在开发可改善脑缺血后认知结果的疗法的研究已证明是困难的。但是,破坏神经网络活动的机制可能会提供有价值的见解,因为大脑局部和全局网络的紊乱都与认知缺陷有关。在这篇综述中,我们建议不同脑网络内异常的神经动力学可能是缺血后突触可塑性过程和电路中断引起的。鉴于它们在记忆处理中的作用,本讨论主要涉及海马和Papez回路的其他海马外组件内的本地网络活动中断。然而,受损的突触可塑性过程以及Papez回路内结构和功能连接的中断也对全球网络内的变化具有重要意义。尽管要建立这种关系还需要做大量的工作,但迄今为止的证据表明存在联系。如果进一步进行研究,发现可能会导致人们更好地理解认知缺陷如何产生,不仅在脑缺血中,而且在其他神经系统疾病中也是如此。

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