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The well-worn route and the path less traveled: distinct neural bases of route following and wayfinding in humans.

机译:破旧的路线和经过的路线较少:人类路线遵循和寻路的独特神经基础。

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摘要

Finding one's way in a large-scale environment may engage different cognitive processes than following a familiar route. The neural bases of these processes were investigated using functional MRI (fMRI). Subjects found their way in one virtual-reality town and followed a well-learned route in another. In a control condition, subjects followed a visible trail. Within subjects, accurate wayfinding activated the right posterior hippocampus. Between-subjects correlations with performance showed that good navigators (i.e., accurate wayfinders) activated the anterior hippocampus during wayfinding and head of caudate during route following. These results coincide with neurophysiological evidence for distinct response (caudate) and place (hippocampal) representations supporting navigation. We argue that the type of representation used influences both performance and concomitant fMRI activation patterns.
机译:在大型环境中找到自己的出路可能会比沿着熟悉的路线参与不同的认知过程。使用功能磁共振成像(fMRI)研究了这些过程的神经基础。受试者在一个虚拟现实小镇找到了自己的出路,而在另一个虚拟城镇里遵循了一条学识渊博的路线。在对照条件下,受试者遵循可见轨迹。在受试者内,精确的寻路激活了右后海马体。受试者之间与表现的相关性表明,良好的导航员(即精确的寻路器)在寻路过程中激活了海马前部,并在路径跟随过程中激活了尾状头。这些结果与支持导航的独特反应(尾状)和位置(海马状)表示的神经生理学证据相吻合。我们认为所使用的表示类型会影响性能和伴随的功能磁共振成像激活模式。

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