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猫视觉系统中的速度选择性。II. 与不同位点之间相互作用的独立性。

Velocity selectivity in the cat visual system. II. Independence from interactions between different loci.

作者信息

Duysens J, Orban G A, Cremieux J

出版信息

J Neurophysiol. 1985 Oct;54(4):1050-67. doi: 10.1152/jn.1985.54.4.1050.

Abstract

To investigate the dependence of velocity characteristics on spatiotemporal interactions the velocity selectivity of 15 geniculate and 72 cortical cells (areas 17 and 18) was examined with light and dark bars before and after masking all but the most sensitive part of the receptive field. The use of a 0.3 degree window proved effective in eliminating enough spatiotemporal interactions to abolish cortical direction selectivity. The same window improved the responsiveness at high velocities in only 26% of the cortical cells preferring low velocities and having a receptive field with nonoverlapping ON and OFF subregions. The remaining 74% showed various degrees of velocity-independent decrease in response amplitude. The only two geniculate cells that had a velocity upper cutoff lost this cutoff when tested with the mask. Cortical units preferring high velocities lost their responsiveness at high velocities in the mask condition, provided that their receptive fields contained nonoverlapping ON and OFF subregions. Cortical units, which responded best at intermediate velocities and which had receptive fields with nonoverlapping subregions, lost their sharp velocity tuning when tested with a mask. We conclude that inhibitory spatiotemporal interactions can account for the preference for low velocities in at most a quarter of the cells with nonoverlapping subregions. In contrast, facilitatory interactions seem to be important for cortical cells preferring high or intermediate velocities and having receptive fields with nonoverlapping subregions.

摘要

为了研究速度特性对时空相互作用的依赖性,在遮盖除感受野最敏感部分之外的所有区域之前和之后,用亮条和暗条对15个膝状细胞和72个皮质细胞(17区和18区)的速度选择性进行了检测。结果证明,使用0.3度的窗口可有效消除足够多的时空相互作用,从而消除皮质方向选择性。对于仅26%的偏好低速且感受野具有不重叠的开和关子区域的皮质细胞,相同的窗口提高了其在高速时的反应性。其余74%的细胞在反应幅度上呈现出不同程度的与速度无关的下降。仅有的两个具有速度上限的膝状细胞在使用掩模进行测试时失去了这个上限。在掩模条件下,偏好高速的皮质单元在高速时失去了反应性,前提是它们的感受野包含不重叠的开和关子区域。在中等速度下反应最佳且感受野具有不重叠子区域的皮质单元,在使用掩模进行测试时失去了其尖锐的速度调谐。我们得出结论,抑制性时空相互作用最多只能解释四分之一具有不重叠子区域的细胞对低速的偏好。相比之下,促进性相互作用似乎对偏好高速或中等速度且感受野具有不重叠子区域的皮质细胞很重要。

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