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猕猴膝状皮质通路颜色拮抗细胞的光谱带宽

Spectral bandwidths of color-opponent cells of geniculocortical pathway of macaque monkeys.

作者信息

de Monasterio F M, Schein S J

出版信息

J Neurophysiol. 1982 Feb;47(2):214-24. doi: 10.1152/jn.1982.47.2.214.

Abstract
  1. The spectral-response bandwidth and peak sensitivity of the responses of color-opponent retinal ganglion cells of the macaque monkey were examined in conditions of neutral adaptation. Color-opponent cells showed specific "signatures" in plots of response bandwidth versus wavelength of the peak sensitivity that allow for an acceptable estimate of the cone types whose signals mediate cell responses. 2. Averaged spectral bandwidths of color-opponent ganglion cells were compared with published data from color-selective neurons of subsequent levels of the geniculocortical pathway, including the extrastriate area termed V4. No significant differences were found between color-selective cells of the retina, dorsal lateral geniculate body, striate cortex, and V4. 3. The spectral location of the peak sensitivity of responses of the various types of color-opponent ganglion cells showed a relatively broad distribution, loosely clustering at some spectral loci. Comparison of such distribution with that of recently reported V4 cells response indicates that a remarkable scarcity of "blue/yellow" opponent responses in such reports. 4. In association with more recent electrophysiological studies of V4 cells, the results do not support current claims of a color specialization of this extrastriate area, and suggest lack of significant spectral tuning of the retinal output in, so far known, higher visual centers having color-selective cells.
摘要
  1. 在中性适应条件下,研究了猕猴颜色拮抗视网膜神经节细胞反应的光谱响应带宽和峰值敏感性。颜色拮抗细胞在响应带宽与峰值敏感性波长的关系图中显示出特定的“特征”,这使得能够对介导细胞反应的视锥细胞类型进行合理估计。2. 将颜色拮抗神经节细胞的平均光谱带宽与来自膝状皮质通路后续水平的颜色选择性神经元(包括称为V4的纹外区域)的已发表数据进行比较。在视网膜、背外侧膝状体、纹状皮质和V4的颜色选择性细胞之间未发现显著差异。3. 各种类型的颜色拮抗神经节细胞反应的峰值敏感性光谱位置显示出相对较宽的分布,在某些光谱位点上松散聚集。将这种分布与最近报道的V4细胞反应的分布进行比较表明,此类报道中“蓝/黄”拮抗反应明显稀少。4. 结合最近对V4细胞的电生理研究,结果不支持目前关于这个纹外区域颜色特化的说法,并表明在迄今为止已知的具有颜色选择性细胞的高级视觉中枢中,视网膜输出缺乏明显的光谱调谐。

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