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Both visual and idiothetic cues contribute to head direction cell stability during navigation along complex routes

机译:视觉提示和惯常提示都有助于在复杂路线上导航时头部细胞的稳定性

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摘要

Successful navigation requires a constantly updated neural representation of directional heading, which is conveyed by head direction (HD) cells. The HD signal is predominantly controlled by visual landmarks, but when familiar landmarks are unavailable, self-motion cues are able to control the HD signal via path integration. Previous studies of the relationship between HD cell activity and path integration have been limited to two or more arenas located in the same room, a drawback for interpretation because the same visual cues may have been perceptible across arenas. To address this issue, we tested the relationship between HD cell activity and path integration by recording HD cells while rats navigated within a 14-unit T-maze and in a multiroom maze that consisted of unique arenas that were located in different rooms but connected by a passageway. In the 14-unit T-maze, the HD signal remained relatively stable between the start and goal boxes, with the preferred firing directions usually shifting <45° during maze traversal. In the multiroom maze in light, the preferred firing directions also remained relatively constant between rooms, but with greater variability than in the 14-unit maze. In darkness, HD cell preferred firing directions showed marginally more variability between rooms than in the lighted condition. Overall, the results indicate that self-motion cues are capable of maintaining the HD cell signal in the absence of familiar visual cues, although there are limits to its accuracy. In addition, visual information, even when unfamiliar, can increase the precision of directional perception.
机译:成功的导航需要不断更新的定向航向神经表示,它由航向(HD)单元传达。 HD信号主要由视觉界标控制,但是当没有熟悉的界标时,自运动提示可以通过路径集成来控制HD信号。以前关于HD细胞活动与路径整合之间关系的研究仅限于位于同一房间的两个或多个舞台,这是解释的一个缺点,因为在整个舞台上都可以感知到相同的视觉提示。为了解决这个问题,我们通过记录高清细胞来测试高清细胞活动与路径整合之间的关系,同时大鼠在一个14单位的T形迷宫中以及在一个由位于不同房间但相互连接的独特竞技场组成的多房间迷宫中导航一条通道。在14个单位的T型迷宫中,HD信号在起始框和目标框之间保持相对稳定,在迷宫穿越过程中,首选的发射方向通常会偏移<45°。在有光照的多室迷宫中,各室之间的首选发射方向也保持相对恒定,但与14个单位的迷宫相比,变异性更大。在黑暗中,HD电池的优先发射方向与光照条件相比,房间之间的变异性略高。总体而言,结果表明,尽管缺乏准确性,但自我运动提示能够在缺乏熟悉的视觉提示的情况下保持HD细胞信号。此外,即使不熟悉视觉信息,也可以提高定向感知的精度。

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