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猫视网膜中时相性W细胞的时空感受野结构

Spatio-temporal receptive-field structure of phasic W cells in the cat retina.

作者信息

Rowe M H, Palmer L A

机构信息

Department of Biological Sciences, Ohio University, Athens.

出版信息

Vis Neurosci. 1995 Jan-Feb;12(1):117-39. doi: 10.1017/s0952523800007367.

Abstract

The spatio-temporal receptive-field structure of 54 phasic W cells in cat retinas has been examined using the reverse-correlation method of Jones and Palmer (1987). Within this sample, 12 cells had on-center, 16 off-center, and 26 on-off receptive fields. Three of the on-center and seven of the on-off cells were directionally selective. Forty percent of the cells in this sample had local receptive fields consisting of two or more distinct subregions. However, no correlation was observed between the number of subregions in the local receptive field and other response properties such as center sign or direction selectivity. In all cases, individual subregions, including those in on-off cells, appear to be produced by a half-wave rectification of the input signal. For 76% of the cells, these local receptive fields were contained within large suppressive fields which could be seen to extend for at least 10 deg in all directions with no apparent spatial structure. The mechanism producing the suppressive field also appears to involve a rectification of the input signal, and has a relatively high spatial resolution. Furthermore, the suppressive field itself is only responsive to moving or flickering stimuli; large, stationary gratings have no effect on the output of the local receptive-field mechanism. Thus, the overall receptive-field organization of these cells is particularly well suited for detecting local motion. The remaining 24% of cells in the sample lacked suppressive fields, and consequently responded well to large moving stimuli, but these cells were otherwise similar in their receptive-field properties to cells with suppressive fields. The significance of these properties is discussed in the context of the projections of phasic W cells to the superior colliculus and accessory optic system.

摘要

利用琼斯和帕尔默(1987年)的反向相关方法,对猫视网膜中54个相位性W细胞的时空感受野结构进行了研究。在这个样本中,12个细胞具有中心兴奋型、16个细胞具有中心抑制型以及26个细胞具有on-off感受野。其中3个中心兴奋型细胞和7个on-off细胞具有方向选择性。该样本中40%的细胞具有由两个或更多不同子区域组成的局部感受野。然而,在局部感受野中的子区域数量与其他反应特性(如中心信号或方向选择性)之间未观察到相关性。在所有情况下,单个子区域,包括on-off细胞中的子区域,似乎都是由输入信号的半波整流产生的。对于76%的细胞,这些局部感受野包含在大的抑制性区域内,这些抑制性区域在各个方向上至少延伸10度,且没有明显的空间结构。产生抑制性区域的机制似乎也涉及输入信号的整流,并且具有相对较高的空间分辨率。此外,抑制性区域本身仅对移动或闪烁的刺激有反应;大的静止光栅对局部感受野机制的输出没有影响。因此,这些细胞的整体感受野组织特别适合检测局部运动。样本中其余24%的细胞缺乏抑制性区域,因此对大的移动刺激反应良好,但这些细胞在感受野特性方面与具有抑制性区域的细胞相似。本文在相位性W细胞向上丘和副视系统投射的背景下讨论了这些特性的意义。

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