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首页> 外文期刊>Cerebral Cortex >The Architecture of Cross-Hemispheric Communication in the Aging Brain: Linking Behavior to Functional and Structural Connectivity
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The Architecture of Cross-Hemispheric Communication in the Aging Brain: Linking Behavior to Functional and Structural Connectivity

机译:大脑中跨半球交流的体系结构:行为与功能和结构连接性的链接

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摘要

Contralateral recruitment remains a controversial phenomenon in both the clinical and normative populations. To investigate the neural correlates of this phenomenon, we explored the tendency for older adults to recruit prefrontal cortex (PFC) regions contralateral to those most active in younger adults. Participants were scanned with diffusion tensor imaging and functional magnetic rresonance imaging during a lateralized word matching task (unilateral vs. bilateral). Cross-hemispheric communication was measured behaviorally as greater accuracy for bilateral than unilateral trials (bilateral processing advantage [BPA]) and at the neural level by functional and structural connectivity between contralateral PFC. Compared with the young, older adults exhibited 1) greater BPAs in the behavioral task, 2) greater compensatory activity in contralateral PFC during the bilateral condition, 3) greater functional connectivity between contralateral PFC during bilateral trials, and 4) a positive correlation between fractional anisotropy in the corpus callosum and both the BPA and the functional connectivity between contralateral PFC, indicating that older adults' ability to distribute processing across hemispheres is constrained by white matter integrity. These results clarify how older adults’ ability to recruit extra regions in response to the demands of aging is mediated by existing structural architecture, and how this architecture engenders corresponding functional changes that allow subjects to meet those task demands.
机译:在临床人群和规范人群中,对侧募集仍然是一个有争议的现象。为了研究这种现象的神经相关性,我们探索了老年人招募与年轻成年人中最活跃者相对的前额叶皮层(PFC)区域的趋势。在侧向词匹配任务(单侧或双侧)期间,使用扩散张量成像和功能性磁共振成像对参与者进行扫描。在行为上,跨半球交流的测量结果是双侧比单侧试验具有更高的准确性(双侧处理优势[BPA]),并且通过对侧PFC之间的功能和结构连通性在神经水平上进行了测量。与年轻人相比,老年人在行为任务中表现出更大的BPA,2)在双侧情况下对侧PFC的补偿活动更大,3)在双侧试验期间对侧PFC之间的功能连接性更大,以及4)小数之间的正相关os体和BPA以及对侧PFC之间的功能连接性各不相同,这表明老年人的白质完整性限制了他们在半球上分布加工的能力。这些结果阐明了现有的结构体系如何调节老年人响应衰老需求而招募更多区域的能力,以及这种体系结构如何引起相应的功能变化,从而使受试者能够满足这些任务要求。

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    《Cerebral Cortex》 |2012年第1期|p.232-242|共11页
  • 作者

    Roberto Cabeza;

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