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头部方向细胞与方向感的神经生理学基础。

Head direction cells and the neurophysiological basis for a sense of direction.

作者信息

Taube J S

机构信息

Department of Psychology, Dartmouth College, Hanover, NH 03755, USA.

出版信息

Prog Neurobiol. 1998 Jun;55(3):225-56. doi: 10.1016/s0301-0082(98)00004-5.

Abstract

Animals require two types of fundamental information for accurate navigation: location and directional heading. Current theories hypothesize that animals maintain a neural representation, or cognitive map, of external space in the brain. Whereas cells in the rat hippocampus and parahippocampal regions encode information about location, a second type of allocentric spatial cell encodes information about the animal's directional heading, independent of the animal's on-going behaviors. These head direction (HD) cells are found in several areas of the classic Papez circuit. This review focuses on experimental studies conducted on HD cells and describes their discharge properties, functional significance, role in path integration, and responses to different environmental manipulations. The anterior dorsal thalamic nucleus appears critical for the generation of the directional signal. Both motor and vestibular cues also play important roles in the signal's processing. The neural network models proposed to account for HD cell firing are compared with known empirical findings. Examples from clinical cases of patients with topographical disorientation are also discussed. It is concluded that studying the neural mechanisms underlying the HD signal provides an excellent opportunity for understanding how the mammalian nervous system processes a high level cognitive signal.

摘要

动物进行精确导航需要两类基本信息

位置和方向。当前理论假设动物在大脑中维持外部空间的神经表征或认知地图。虽然大鼠海马体和海马旁区域的细胞编码有关位置的信息,但另一种类型的以自我为中心的空间细胞编码有关动物方向的信息,与动物正在进行的行为无关。这些头部方向(HD)细胞存在于经典帕佩兹环路的几个区域。本综述重点关注对HD细胞进行的实验研究,并描述它们的放电特性、功能意义、在路径整合中的作用以及对不同环境操纵的反应。丘脑前背核对于方向信号的产生似乎至关重要。运动和前庭线索在信号处理中也起着重要作用。将为解释HD细胞放电而提出的神经网络模型与已知的实证研究结果进行比较。还讨论了地形定向障碍患者临床病例的实例。得出的结论是,研究HD信号背后的神经机制为理解哺乳动物神经系统如何处理高级认知信号提供了绝佳机会。

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