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Interaction Between Hippocampus and Cerebellum Crus I in Sequence-Based but not Place-Based Navigation

机译:基于序列的导航而非基于位置的导航中的海马和小脑I之间的相互作用

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摘要

To examine the cerebellar contribution to human spatial navigation we used functional magnetic resonance imaging and virtual reality. Our findings show that the sensory-motor requirements of navigation induce activity in cerebellar lobules and cortical areas known to be involved in the motor loop and vestibular processing. By contrast, cognitive aspects of navigation mainly induce activity in a different cerebellar lobule (VIIA Crus I). Our results demonstrate a functional link between cerebellum and hippocampus in humans and identify specific functional circuits linking lobule VIIA Crus I of the cerebellum to medial parietal, medial prefrontal, and hippocampal cortices in nonmotor aspects of navigation. They further suggest that Crus I belongs to 2 nonmotor loops, involved in different strategies: place-based navigation is supported by coherent activity between left cerebellar lobule VIIA Crus I and medial parietal cortex along with right hippocampus activity, while sequence-based navigation is supported by coherent activity between right lobule VIIA Crus I, medial prefrontal cortex, and left hippocampus. These results highlight the prominent role of the human cerebellum in both motor and cognitive aspects of navigation, and specify the cortico-cerebellar circuits by which it acts depending on the requirements of the task.
机译:为了检查小脑对人类空间导航的贡献,我们使用了功能磁共振成像和虚拟现实技术。我们的发现表明,导航的感觉运动要求诱导了小脑小叶和皮质区域的活动,而小叶和皮质区域已知参与运动回路和前庭处理。相比之下,导航的认知方面主要在不同的小脑小叶(VIIA Crus I)中诱导活动。我们的结果证明了人类小脑与海马之间的功能联系,并确定了在非运动性导航方面将小叶小叶VIIA Crus I与内侧顶叶,内侧前额叶和海马皮质连接的特定功能电路。他们进一步表明,Crus I属于2个非运动循环,涉及不同的策略:基于位置的导航受左小脑小叶VIIA之间的相干活动的支持,Crus I和内侧顶叶皮层以及右侧海马的活动相辅相成,同时支持基于序列的导航通过右小叶VIIA Crus I,内侧前额叶皮层和左海马之间的连贯活动。这些结果突出了人类小脑在导航的运动和认知方面的重要作用,并根据任务的要求指定了其作用的皮质小脑回路。

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