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空间导航过程中背侧纹状体头部方向与海马体位置表征

Dorsal striatal head direction and hippocampal place representations during spatial navigation.

作者信息

Ragozzino K E, Leutgeb S, Mizumori S J

机构信息

Psychology Department, University of Utah, Salt Lake City 84112, USA.

出版信息

Exp Brain Res. 2001 Aug;139(3):372-6. doi: 10.1007/s002210100795.

Abstract

Several theories of basal ganglia function describe a striatal contribution to learning that is independent of hippocampal function. This study examined the question of whether the striatum should be regarded as functioning independently of or acting in concert with limbic structures. Dorsal striatal head direction cells and hippocampal place cells were recorded in parallel while rats performed a hippocampal-dependent radial maze task. Changes in the directional preference of head direction cells and the location of place fields were compared following alterations of the sensory environment. When familiar visual cues were presented in new spatial arrangements, or when new visual cues were placed in a familiar environment, rotations of directional preferences were consistent with the mean place-field response. When familiar visual and nonvisual cues were presented in conflict, or when rats were exposed to novel environments, the responses of the two cell types were inconsistent relative to each other. This pattern suggests that current perceptions and expectations of familiar spatial contexts may dynamically modulate the relationship between hippocampus and dorsal striatum.

摘要

几种关于基底神经节功能的理论描述了纹状体在学习中的作用,这种作用独立于海马体功能。本研究探讨了纹状体是否应被视为独立于边缘结构发挥作用或与边缘结构协同作用的问题。在大鼠执行依赖海马体的放射状迷宫任务时,同时记录背侧纹状体头部方向细胞和海马体位置细胞。在感觉环境改变后,比较头部方向细胞的方向偏好变化和位置场的位置。当熟悉的视觉线索以新的空间排列呈现时,或者当新的视觉线索放置在熟悉的环境中时,方向偏好的旋转与平均位置场反应一致。当熟悉的视觉和非视觉线索出现冲突时,或者当大鼠暴露于新环境时,两种细胞类型的反应彼此不一致。这种模式表明,当前对熟悉空间背景的感知和期望可能会动态调节海马体和背侧纹状体之间的关系。

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