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内源性 GABA 、功能连接和行为灵活性之间的相互作用随着年龄的增长而发生显著改变。

The interaction between endogenous GABA, functional connectivity, and behavioral flexibility is critically altered with advanced age.

机构信息

Department of Movement Sciences, Movement Control and Neuroplasticity Research Group, KU Leuven, Leuven, Belgium.

KU Leuven Brain Institute, Leuven, Belgium.

出版信息

Commun Biol. 2022 May 6;5(1):426. doi: 10.1038/s42003-022-03378-w.

Abstract

The flexible adjustment of ongoing behavior challenges the nervous system's dynamic control mechanisms and has shown to be specifically susceptible to age-related decline. Previous work links endogenous gamma-aminobutyric acid (GABA) with behavioral efficiency across perceptual and cognitive domains, with potentially the strongest impact on those behaviors that require a high level of dynamic control. Our analysis integrated behavior and modulation of interhemispheric phase-based connectivity during dynamic motor-state transitions with endogenous GABA concentration in adult human volunteers. We provide converging evidence for age-related differences in the preferred state of endogenous GABA concentration for more flexible behavior. We suggest that the increased interhemispheric connectivity observed in the older participants represents a compensatory neural mechanism caused by phase-entrainment in homotopic motor cortices. This mechanism appears to be most relevant in the presence of a less optimal tuning of the inhibitory tone as observed during healthy aging to uphold the required flexibility of behavioral action. Future work needs to validate the relevance of this interplay between neural connectivity and GABAergic inhibition for other domains of flexible human behavior.

摘要

持续行为的灵活调整挑战了神经系统的动态控制机制,并已显示出特别容易受到与年龄相关的衰退的影响。先前的工作将内源性γ-氨基丁酸(GABA)与感知和认知领域的行为效率联系起来,对那些需要高水平动态控制的行为可能产生最强的影响。我们的分析整合了行为和内源性 GABA 浓度在成年人类志愿者在动态运动状态转换过程中的调制,以及半球间基于相位的连通性。我们提供了一致的证据,证明与年龄相关的内源性 GABA 浓度的首选状态存在差异,以便于更灵活的行为。我们认为,在年龄较大的参与者中观察到的增加的半球间连通性代表了同型运动皮质中相位同步引起的补偿性神经机制。这种机制在健康衰老期间观察到的抑制性音调的优化调整不太理想的情况下似乎最为相关,以维持行为动作所需的灵活性。未来的工作需要验证神经连通性和 GABA 能抑制之间的这种相互作用对于人类其他灵活行为领域的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4340/9076638/f6c724b01d97/42003_2022_3378_Fig1_HTML.jpg

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