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海马体CA1位置细胞活动的惯性、基质和地标线索控制

Inertial, substratal and landmark cue control of hippocampal CA1 place cell activity.

作者信息

Wiener S I, Korshunov V A, Garcia R, Berthoz A

机构信息

CNRS-Collège de France Laboratoire de Physiologie de la Perception de l'Action UMR-C 9950, Paris, France.

出版信息

Eur J Neurosci. 1995 Nov 1;7(11):2206-19. doi: 10.1111/j.1460-9568.1995.tb00642.x.

DOI:10.1111/j.1460-9568.1995.tb00642.x
PMID:8563970
Abstract

Hippocampal 'place cells' discharge when a rat occupies a location that is fixed in relation to environmental landmarks. A principal goal of this study was to determine whether hippocampal place cell activity could be influenced by inertial cues. Water-deprived rats were trained in a square-walled open field in a dark room. The behavioral task required alternating visits to water reservoirs in the centre and in the four corners of the arena. The rat and arena were rotated in total darkness through +/-90, 180 or 270 degrees C. The next water reward was then presented in the corner at the same position relative to the outside room as before the rotation. A cue card was later illuminated in this corner as a visual cue for the extra-arena (room) reference frame. Fifteen out of 97 recorded hippocampal CA1 complex spike cells had spatially selective discharges in non-central parts of the arena. After arena rotations, the firing fields of three units shifted between corners of the arena to maintain a fixed orientation relative to the room. This indicates that the hippocampus updated its representation of the position and heading direction of the rat using vestibular-derived inputs concerning rotation angle. Other spatially selective discharges were guided to landmark cues (cue card or position of the reward: two units) or arena-locked 'substratal' cues (eight units). In six cells, place cell activity suddenly ceased or appeared following rotations. These results provide evidence for contributions of inertial as well as substratal and landmark information to hippocampal spatial representations.

摘要

当大鼠处于相对于环境地标固定的位置时,海马体的“位置细胞”会放电。本研究的一个主要目标是确定海马体位置细胞的活动是否会受到惯性线索的影响。将缺水的大鼠置于黑暗房间中的方形围墙开放场地进行训练。行为任务要求大鼠交替前往场地中心和四个角落的水容器处。在完全黑暗的环境中,将大鼠和场地旋转90°、180°或270°(正负)。然后,下一次水奖励会在相对于旋转前房间外部相同位置的角落给出。之后,在这个角落亮起一张提示卡,作为场地外(房间)参考框架的视觉线索。在记录的97个海马CA1复合锋电位细胞中,有15个在场地非中心部分具有空间选择性放电。场地旋转后,三个神经元的放电场在场地的角落之间移动,以相对于房间保持固定的方向。这表明海马体利用与旋转角度相关的前庭输入更新了其对大鼠位置和头部方向的表征。其他空间选择性放电则由地标线索(提示卡或奖励位置:两个神经元)或场地锁定的“基质”线索(八个神经元)引导。在六个细胞中,位置细胞的活动在旋转后突然停止或出现。这些结果为惯性以及基质和地标信息对海马体空间表征的贡献提供了证据。

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