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与老年人抑制控制缺陷相关的大脑功能激活

Functional Brain Activation Associated with Inhibitory Control Deficits in Older Adults.

作者信息

Coxon James P, Goble Daniel J, Leunissen Inge, Van Impe Annouchka, Wenderoth Nicole, Swinnen Stephan P

机构信息

Movement Neuroscience Laboratory, Department of Sport and Exercise Science Centre for Brain Research, University of Auckland, Auckland, New Zealand Movement Control and Neuroplasticity Research Group, KU Leuven, Leuven, Belgium.

School of Exercise and Nutritional Sciences, San Diego State University, San Diego, CA, USA.

出版信息

Cereb Cortex. 2016 Jan;26(1):12-22. doi: 10.1093/cercor/bhu165. Epub 2014 Aug 1.

Abstract

In young adults, canceling an initiated action depends on the right inferior frontal cortex (IFC), presupplementary motor area (preSMA), and the basal ganglia. Older adults show response inhibition deficits, but how this relates to functional brain activation remains unclear. Using event-related functional magnetic resonance imaging, we tested whether older adults (N = 20) exhibit overactivation during stop-signal inhibition as shown for attentional control tasks, or reduced activity compared with young adults (N = 20). We used a modified stop-signal task involving coupled bimanual responses and manipulated whether both or just one hand was cued to stop. Stop-task difficulty was matched across groups. We found a group by condition interaction in supramarginal gyrus, anterior insula, rIFC, and preSMA, with activation increasing for successful Stop versus Go trials in the young adults only. Comparing the groups on Stop trials revealed preSMA and striatum hypoactivity for older adults. White matter tracts connecting rIFC, preSMA, and the subthalamic nuclei were associated with stronger activation of preSMA in older adults, suggesting that maintenance of the brain's structure has positive implications for brain function.

摘要

在年轻人中,取消已启动的动作取决于右侧额下回(IFC)、辅助运动前区(preSMA)和基底神经节。老年人表现出反应抑制缺陷,但这与大脑功能激活之间的关系仍不清楚。我们使用事件相关功能磁共振成像技术,测试了老年人(N = 20)在停止信号抑制过程中是否像在注意力控制任务中那样表现出过度激活,还是与年轻人(N = 20)相比活动减少。我们使用了一种改良的停止信号任务,该任务涉及双手耦合反应,并操纵是提示双手还是仅一只手停止。跨组匹配停止任务的难度。我们在缘上回、前岛叶、右侧额下回和辅助运动前区发现了一个组间条件交互作用,仅在年轻人中,成功的停止试验与继续试验相比激活增加。在停止试验中比较两组发现,老年人的辅助运动前区和纹状体活动不足。连接右侧额下回、辅助运动前区和丘脑底核的白质束与老年人辅助运动前区更强的激活相关,这表明大脑结构的维持对脑功能具有积极影响。

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