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猫纹状皮层简单细胞感受野的方向选择性和时空结构

Directional selectivity and spatiotemporal structure of receptive fields of simple cells in cat striate cortex.

作者信息

Reid R C, Soodak R E, Shapley R M

机构信息

Rockefeller University, New York 10021.

出版信息

J Neurophysiol. 1991 Aug;66(2):505-29. doi: 10.1152/jn.1991.66.2.505.

Abstract
  1. Simple cells in cat striate cortex were studied with a number of stimulation paradigms to explore the extent to which linear mechanisms determine direction selectivity. For each paradigm, our aim was to predict the selectivity for the direction of moving stimuli given only the responses to stationary stimuli. We have found that the prediction robustly determines the direction and magnitude of the preferred response but overestimates the nonpreferred response. 2. The main paradigm consisted of comparing the responses of simple cells to contrast reversal sinusoidal gratings with their responses to drifting gratings (of the same orientation, contrast, and spatial and temporal frequencies) in both directions of motion. Although it is known that simple cells display spatiotemporally inseparable responses to contrast reversal gratings, this spatiotemporal inseparability is demonstrated here to predict a certain amount of direction selectivity under the assumption that simple cells sum their inputs linearly. 3. The linear prediction of the directional index (DI), a quantitative measure of the degree of direction selectivity, was compared with the measured DI obtained from the responses to drifting gratings. The median value of the ratio of the two was 0.30, indicating that there is a significant nonlinear component to direction selectivity. 4. The absolute magnitudes of the responses to gratings moving in both directions of motion were compared with the linear predictions as well. Whereas the preferred direction response showed only a slight amount of facilitation compared with the linear prediction, there was a significant amount of nonlinear suppression in the nonpreferred direction. 5. Spatiotemporal inseparability was demonstrated also with stationary temporally modulated bars. The time course of response to these bars was different for different positions in the receptive field. The degree of spatiotemporal inseparability measured with sinusoidally modulated bars agreed quantitatively with that measured in experiments with stationary gratings. 6. A linear prediction of the responses to drifting luminance borders was compared with the actual responses. As with the grating experiments, the prediction was qualitatively accurate, giving the correct preferred direction but underestimating the magnitude of direction selectivity observed.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们采用多种刺激范式对猫纹状皮层中的简单细胞进行了研究,以探究线性机制在多大程度上决定方向选择性。对于每种范式,我们的目标是仅根据对静止刺激的反应来预测对移动刺激方向的选择性。我们发现,这种预测能够可靠地确定偏好反应的方向和幅度,但高估了非偏好反应。2. 主要范式包括比较简单细胞对对比度反转正弦光栅的反应与其对在两个运动方向上(具有相同方向、对比度以及空间和时间频率)漂移光栅的反应。尽管已知简单细胞对对比度反转光栅表现出时空不可分离的反应,但在此证明,在简单细胞线性求和其输入的假设下,这种时空不可分离性可预测一定程度的方向选择性。3. 将方向指数(DI,一种方向选择性程度的定量度量)的线性预测与从对漂移光栅的反应中获得的实测DI进行了比较。两者比值的中值为0.30,表明方向选择性存在显著的非线性成分。4. 还比较了在两个运动方向上移动的光栅的反应的绝对幅度与线性预测。与线性预测相比,偏好方向反应仅表现出轻微的易化作用,而非偏好方向则存在显著的非线性抑制。5. 静止的时间调制条也证明了时空不可分离性。对这些条的反应的时间进程在感受野的不同位置有所不同。用正弦调制条测量的时空不可分离程度与用静止光栅实验测量的结果在数量上一致。6. 将对漂移亮度边界的反应的线性预测与实际反应进行了比较。与光栅实验一样,该预测在定性上是准确的,给出了正确的偏好方向,但低估了观察到的方向选择性幅度。(摘要截取自400字)

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