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. I. Description and quantitative analysis
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Head-direction cells recorded from the postsubiculum in freely moving rats. I. Description and quantitative analysis

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。一描述与定量分析

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摘要

This paper is a study of the behavioral and spatial firing correlates of neurons in the rat postsubiculum. Recordings were made from postsubicular neurons as rats moved freely throughout a cylindrical chamber, where the major cue for orientation was a white card taped to the inside wall. An automatic video/computer system monitored cell discharge while simultaneously tracking the position of 2 colored light emitting diodes (LEDs) secured to the animal's head. The animal's location was calculated from the position of one of the LEDs and head direction in the horizontal plane calculated from the relative positions of the 2 LEDs. Approximately 26% of the cells were classified as head-direction cells because they discharged as a function of the animal's head direction in the horizontal plane, independent of the animal's behavior, location, or trunk position. For each head-direction cell, vectors drawn in the direction of maximal firing were parallel throughout the recording chamber and did not converge toward a single point. Plots of firing rate versus head direction showed that each firing-rate/head-direction function was adequately described by a triangular function. Each cell's maximum firing rate occurred at only one (the preferred) head direction; firing rates at head directions on either side of the preferred direction decreased linearly with angular deviation from the preferred direction. Results from 24 head-direction cells in 7 animals showed an equal distribution of preferred firing directions over a 360 degrees angle. The peak firing rate of head- direction cells varied from 5 to 115 spikes/sec (mean: 35). The range of head-direction angles over which discharge was elevated (directional firing range) was usually about 90 degrees, with little, if any, discharge at head directions outside this range. Quantitative analysis showed the location of the animal within the cylinder had minimal effect on directional cell firing. For each head-direction cell, the preferred direction, peak firing rate, and directional firing range remained stable for days. These results identify a new cell type that signals the animal's head direction in its environment.
机译:本文研究了大鼠后丘脑神经元的行为和空间激发相关性。当大鼠在整个圆柱腔中自由移动时,从关节下神经元记录下来,定位的主要线索是用白卡贴在内壁上。一个自动的视频/计算机系统监视细胞放电,同时跟踪固定在动物头部的2个彩色发光二极管(LED)的位置。根据LED之一的位置和水平面中头部的方向,根据2个LED的相对位置计算出动物的位置。大约26%的细胞被归类为头向细胞,因为它们在水平面上随动物头方向的变化而释放,与动物的行为,位置或躯干位置无关。对于每个头部方向单元,在最大发射方向上绘制的矢量在整个记录腔中是平行的,并且不收敛于单个点。发射速率与头部方向的关系图表明,每个发射速率/头部方向的函数都可以用三角函数充分描述。每个单元的最大发射速率仅发生在一个(首选)头部方向上。在优选方向的任一侧上的头部方向上的发射速率随着与优选方向的角度偏离而线性减小。来自7只动物的24个头部方向细胞的结果显示,优选的发射方向在360度角上均等分布。头向电池的峰值发射速率在5到115个峰值/秒之间变化(平均值:35)。排出被提高的头部方向角度的范围(定向发射范围)通常为大约90度,在该范围之外的头部方向上几乎没有排出(如果有的话)。定量分析表明,动物在圆柱体内的位置对定向细胞射击的影响最小。对于每个头向电池,首选方向,峰值发射速率和定向发射范围在几天内保持稳定。这些结果确定了一种新的细胞类型,可在环境中发出信号,指示动物的头部方向。

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