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Head direction cell firing properties and behavioural performance in 3-D space

机译:3D空间中的头部方向单元射击特性和行为表现

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Previous studies have identified a population of neurons in the rat brain that discharge as a function of the animal's directional heading in the horizontal plane, independent of their location and on-going behaviour. Most studies on head direction (HD) cells have explored how they respond in two-dimensional environments within the horizontal plane. Many animals, however, live and locomote in a three-dimensional world. This paper reviews how HD cells respond when the animal locomotes on a vertical surface or inverted on a ceiling. We found that HD cells fire in a normal, direction-dependent manner when the rat is in the vertical plane, but not when the animal is inverted. Recent behavioural studies reported that rats are capable of accurately performing a navigational task when inverted, but only when the task was simple and started from not more than one or two entry points. Probe trials found that they did not have a flexible, map-like representation of space when inverted. The loss of the directional signal when the animal is in an inverted orientation may account for the absence of the map-like representation. Taken together, these findings indicate that a normal otolith signal contributes an important role to HD cell discharge.
机译:先前的研究已经确定了大鼠大脑中的神经元种群,这些神经元的放电与动物在水平面中的定向方向有关,而与它们的位置和持续行为无关。大多数有关头部方向(HD)细胞的研究都探索了它们在水平面内的二维环境中的反应。但是,许多动物在三维世界中生活和活动。本文回顾了当动物在垂直表面上运动或在天花板上倒置时,HD细胞如何反应。我们发现,当大鼠处于垂直平面时,HD细胞以正常的,方向相关的方式发射,而当动物倒转时则不会。最近的行为研究报告说,老鼠倒立时能够准确地执行导航任务,但仅当任务简单且从不超过一个或两个入口点开始时才能够。探针试验发现,倒置时它们没有像地图一样灵活的空间表示形式。当动物处于倒置方向时方向信号的丢失可能会导致缺少地图状表示。综上所述,这些发现表明正常的耳石信号对HD细胞放电起重要作用。

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