首页> 外文期刊>Advances in Neuroscience >Structure-Function Relationships behind the Phenomenon of Cognitive Resilience in Neurology: Insights for Neuroscience and Medicine
【24h】

Structure-Function Relationships behind the Phenomenon of Cognitive Resilience in Neurology: Insights for Neuroscience and Medicine

机译:神经病学认知弹性现象背后的结构-功能关系:神经科学和医学的见解

获取原文
       

摘要

The phenomenon of cognitive resilience, that is, the dynamical preservation of normal functions despite neurological disorders, demonstrates that cognition can be highly robust to devastating brain injury. Here, cognitive resilience is considered across a range of neurological conditions. Simple computational models of structure-function relationships are used to discuss hypotheses about the neural mechanisms of resilience. Resilience expresses functional redundancies in brain networks and suggests a process of dynamic rerouting of brain signals. This process is underlined by a global renormalization of effective connectivity, capable of restoring information transfer between spared brain structures via alternate pathways. Local mechanisms of synaptic plasticity mediate the renormalization at the lowest level of implementation, but it is also driven by top-down cognition, with a key role of self-awareness in fostering resilience. The presence of abstraction layers in brain computation and networking is hypothesized to account for the renormalization process. Future research directions and challenges are discussed regarding the understanding and control of resilience based on multimodal neuroimaging and computational neuroscience. The study of resilience will illuminate ways by which the brain can overcome adversity and help inform prevention and treatment strategies. It is relevant to combating the negative neuropsychological impact of aging and fostering cognitive enhancement.
机译:认知弹性的现象,即尽管存在神经系统疾病也能动态保留正常功能,这表明认知对于破坏性脑损伤具有高度的鲁棒性。在这里,认知适应力被认为是跨一系列神经系统疾病的。结构-功能关系的简单计算模型用于讨论有关弹性神经机制的假设。弹性表示大脑网络中的功能冗余,并建议动态重新路由大脑信号的过程。有效连接的全局重新规范化强调了这一过程,能够通过备用途径恢复备用大脑结构之间的信息传递。突触可塑性的局部机制在最低的实施水平上介导了正常化,但它也由自上而下的认知驱动,自我意识在增强适应力中起关键作用。假设大脑计算和网络中存在抽象层以说明重新规范化过程。讨论了有关基于多模态神经成像和计算神经科学的复原力的理解和控制的未来研究方向和挑战。对复原力的研究将阐明大脑克服逆境并帮助制定预防和治疗策略的方法。它与抵抗衰老对神经心理的负面影响以及促进认知能力的提高有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号