首页> 美国卫生研究院文献>The Journal of Neuroscience >Head-direction cells recorded from the postsubiculum in freely moving rats. II. Effects of environmental manipulations
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Head-direction cells recorded from the postsubiculum in freely moving rats. II. Effects of environmental manipulations

机译:在自由移动的大鼠中从睡后角质中记录的头方向细胞。二。环境操纵的影响

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摘要

The discharge characteristics of postsubicular head-direction cells in a fixed environment were described in the previous paper (Taube et al., 1990). This paper reports changes in the firing properties of head- direction cells following changes in the animal's environment. Head- direction cells were recorded from rats as they moved freely in a 76-cm- diameter gray cylinder. A white card, occupying 100 degrees of arc, was taped to the inside wall of the cylinder and served as the major orienting spatial cue in the animal's environment. Rotation of the cue card produced near-equal rotation in the preferred firing direction of head-direction cells, with minimal changes in peak firing rate, directional firing range, or asymmetry of the firing-rate/head- direction function. Card removal had no effect on peak firing rate or range of firing, but in 8/13 cells the preferred direction rotated by at least 24 degrees. Similarly, changing the shape of the environment to a rectangular or square enclosure caused the preferred firing direction to rotate by at least 48 degrees for 8/10 cells in the rectangle and 3/8 cells in the square, with minimal changes in the peak firing rate or directional firing range. Hand holding the animals and moving them around the cylinder had no effect on the preferred direction or firing range of the cell, but decreased the maximal firing rate in 7/9 cells. On 2 occasions, 2 head-direction cells were recorded simultaneously. The rotation of the preferred firing direction for one cell was the same as the rotation of the preferred direction for the second cell after each environmental manipulation. These results demonstrate that specific visual cues in the environment can exert control over the preferred firing direction and indicate that head- direction cell firing is not a simple sensory response to visual cues, but rather represents more abstract information concerning the animal's spatial relationship with its environment. The constancy of the angle between the preferred firing directions of pairs of simultaneously recorded head-direction cells suggests that there is a fixed mapping of the population onto direction within the environment. Thus, environmental manipulations appear to cause only a change in the reference direction, but leave all other discharge characteristics of directional cells unchanged. In the discussion, comparisons are drawn between the responses of head-direction cells and hippocampal place cells to similar environmental manipulations (Muller and Kubie, 1987), and ways in which these 2 spatial systems interact in navigation are discussed.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:前一论文(Taube et al。,1990)中描述了在固定环境中亚关节后方向细胞的放电特性。本文报道了随着动物环境的变化,头向细胞发射特性的变化。当大鼠在直径为76 cm的灰色圆柱中自由移动时,记录了它们的头部方向细胞。一张白卡,占据了100度的弧度,被粘贴在圆柱体的内壁上,并作为动物环境中主要的定向空间线索。提示卡的旋转在头方向单元的首选发射方向上产生了几乎相等的旋转,同时峰值发射速率,定向发射范围或发射速率/头方向功能的不对称性变化很小。拔卡对峰值发射速率或发射范围没有影响,但在8/13电池中,首选方向至少旋转了24度。类似地,将环境形状更改为矩形或正方形外壳会导致矩形的8/10单元和正方形的3/8单元的首选发射方向旋转至少48度,而峰值发射的变化很小速率或定向射击范围。用手握住动物并将它们绕圆柱移动不会影响细胞的首选方向或发射范围,但会降低7/9细胞的最大发射速率。在两个场合下,同时记录了两个头向单元。每次环境操作后,一个单元的首选发射方向的旋转与第二个单元的首选发射方向的旋转相同。这些结果表明,环境中的特定视觉提示可以控制优选的发射方向,并表明头部方向的细胞发射不是对视觉提示的简单感官反应,而是代表了有关动物与其环境的空间关系的更多抽象信息。 。在同时记录的头部方向单元对的优选发射方向之间的角度的恒定性表明存在种群到环境内方向的固定映射。因此,环境操纵似乎仅引起参考方向的变化,而使定向电池的所有其他放电特性保持不变。在讨论中,比较了头向细胞和海马位置细胞对类似环境操作的反应(Muller和Kubie,1987),并讨论了这两个空间系统在导航中相互作用的方式。(摘要摘录于400)话)

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