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Spatial summation in subregions of simple-cell receptive fields in cat striate cortex as a function of slit length.

机译:猫纹状皮层中单细胞感受野区域的区域总和与狭缝长度的关系。

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摘要

Spatial summation along the optimum stimulus orientation in subregions of simple-cell receptive fields in cat striate cortex was studied quantitatively by measuring the response to stationary light slits of variable length. Before summation analysis, the cell's discharge field was mapped by flashing a test slit on and off in a sequence of positions through the receptive field. A static activation procedure was used to determine the extension of subregions of the receptive field where light stimulation increased (enhancement) or decreased (suppression) the firing rate. An activation slit in the optimum orientation was positioned in the most responsive position of the discharge field and the effects of a parallel test slit, in a series of broadside positions, were assessed from the changes induced in the discharge elicited by the activation slit. Length-response curves for on and off responses were made by positioning a test slit in the respective subregions of the discharge field. The activation procedure was used to make length-response curves for suppression. A test slit of variable length was positioned in a suppression region defined by the activation profiles and an activation slit of fixed length was centred in the most responsive discharge field position. Length summation was found for all cells, both with respect to on and off responses, and suppression. The curves for on and off responses had a maximum value beyond which the response declined or levelled off, but some cells had a secondary, more shallow increase beyond an initial, steeply rising part. Similar properties were found for summation of suppression except that the effects were opposite in sign. Curves made for both on and off regions in the same cell often differed in shape. Such differences were also found when length-response curves made in different suppression regions of the same cell were compared. The various length-summation functions were explained by a model presuming that simple-cell receptive fields consist of partially overlapping non-concentric excitatory and inhibitory fields. This arrangement would also explain why length-response curves in various subregions often had different shapes.
机译:通过测量对可变长度的固定光狭缝的响应,定量研究了猫纹状皮质皮层中单细胞感受野亚区域沿最佳刺激取向的空间总和。在进行总和分析之前,通过在接受磁场的一系列位置上前后闪烁测试缝来绘制细胞的放电磁场。使用静态激活程序来确定感受野的子区域的扩展,在该区域中光刺激会增加(增强)或降低(抑制)发射速率。处于最佳方向的激活狭缝位于放电场的最敏感位置,并根据激活狭缝引起的放电变化,评估了一系列宽边位置中平行测试狭缝的效果。通过将测试缝隙放置在放电场的各个子区域中,可以得出通断响应的长度响应曲线。激活程序用于制作长度响应曲线以进行抑制。将可变长度的测试狭缝放置在由激活曲线定义的抑制区域中,将固定长度的激活狭缝定在最敏感的放电场位置的中心。发现所有细胞的长度总和,包括开和关响应以及抑制。开启和关闭响应的曲线具有最大值,超过该最大值,响应将下降或趋于平稳,但是某些单元格在初始的陡峭上升部分之后出现了次要的,较浅的增大。对于抑制的总和,发现了相似的特性,除了效果的符号相反。在同一单元格中为打开和关闭区域绘制的曲线的形状通常不同。当比较在同一细胞的不同抑制区域中产生的长度-响应曲线时,也发现了这种差异。通过一个模型来解释各种长度求和函数,该模型假定简单细胞接受场由部分重叠的非同心兴奋场和抑制场组成。这种安排还可以解释为什么各个子区域中的长度响应曲线通常具有不同的形状。

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