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猫大脑皮质21a区细胞的反应特性,特别涉及方位特异性

Response characteristics of the cells of cortical area 21a of the cat with special reference to orientation specificity.

作者信息

Wimborne B M, Henry G H

机构信息

Centre for Visual Science, John Curtin School of Medical Research, Australian National University, Canberra.

出版信息

J Physiol. 1992 Apr;449:457-78. doi: 10.1113/jphysiol.1992.sp019096.

Abstract
  1. Extracellular recording using tungsten-in-glass microelectrodes was conducted on 115 neurons in area 21a of fifteen anaesthetized cats. Quantitative analysis using computer-controlled display and collecting routines were used to investigate the excitatory and inhibitory regions of the receptive field and to see if interaction, within and between these regions, contributed to the response properties of the cells. 2. The responses of the cells in the sample appeared to arise from a single, homogeneous class. All cells had single discharge regions which responded with composite ON/OFF firing to a stationary flashing bar. The same region also responded to moving light and dark bars and edges. There was little evidence of inhibition as measured by the suppression of spontaneous or induced firing. Most cells had relatively small receptive fields (primary width: mean = 2.1 +/- 0.9 deg (S.D.); n = 108), all were binocular and were located within 15.0 deg of the visual axes. 3. All cells responded well to slowly moving stimuli but generally failed to respond to stimuli moving faster than 10.0 deg s-1. All responses were bi-directional and, although many showed evidence of length summation, there was no sign of linear summation. 4. Despite the absence of significant sideband inhibition many cells were acutely tuned for orientation (half-width at half-height: mean = 15.6 +/- 5.3 deg; n = 48). To investigate this property further, cells were analysed to assess the effect of changing the length of a moving bar stimulus on the acuteness of the orientation tuning curve. Short bars, of similar length to the width of the receptive field, had orientation tuning curves of equivalent sharpness to those obtained with longer bars. 5. The equivalence of orientation tuning for long and short bars stands in contrast to the results obtained for both simple (S) and complex (C) cells of the striate cortex where tuning for the longer bar is sharper than that for the shorter. The result from area 21a cells is consistent with the absence of sideband inhibition and can be related to an input from the striate cortex that passes through a threshold barrier. 6. The orientation tuning of cells of area 21a can be explained if it is assumed that they receive their major input from C or complex cells of the striate cortex in which firing must reach a threshold frequency to activate the recipient cell.
摘要
  1. 使用玻璃微电极钨丝进行细胞外记录,对15只麻醉猫的21a区的115个神经元进行了研究。使用计算机控制的显示和采集程序进行定量分析,以研究感受野的兴奋区和抑制区,并观察这些区域内和区域间的相互作用是否对细胞的反应特性有影响。2. 样本中的细胞反应似乎来自单一的同质类别。所有细胞都有单个放电区域,对静止闪烁条以复合开/关放电做出反应。同一区域也对移动的亮条、暗条和边缘做出反应。通过抑制自发或诱发放电来衡量,几乎没有抑制的证据。大多数细胞的感受野相对较小(初级宽度:平均值 = 2.1 ± 0.9度(标准差);n = 108),均为双眼性,且位于视轴15.0度范围内。3. 所有细胞对缓慢移动的刺激反应良好,但通常对速度超过10.0度/秒的刺激无反应。所有反应都是双向的,尽管许多反应显示出长度总和的证据,但没有线性总和的迹象。4. 尽管没有明显的旁带抑制,但许多细胞对方向有敏锐的调谐(半高宽:平均值 = 15.6 ± 5.3度;n = 48)。为了进一步研究这一特性,对细胞进行分析,以评估改变移动条刺激的长度对方向调谐曲线锐度的影响。与感受野宽度相似长度的短条,其方向调谐曲线的锐度与用长条获得的曲线相当。5. 长条形和短条形方向调谐的等效性与纹状皮层简单(S)细胞和复杂(C)细胞的结果形成对比,在纹状皮层中,对长条形的调谐比对短条形的调谐更尖锐。21a区细胞的结果与缺乏旁带抑制一致,并且可能与通过阈值屏障的纹状皮层输入有关。6. 如果假设21a区细胞主要从纹状皮层的C细胞或复杂细胞接收输入,其中放电必须达到阈值频率才能激活接收细胞,那么21a区细胞的方向调谐就可以得到解释。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72cc/1176089/2c0f3623b34d/jphysiol00433-0457-a.jpg

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