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Responses to visual contours: spatio-temporal aspects of excitation in the receptive fields of simple striate neurones

机译:对视觉轮廓的反应:简单纹状神经元感受野中兴奋的时空方面

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摘要

1. The properties of the receptive fields of simple cells in the cat striate cortex have been studied by preparing average response histograms both to moving slits of light of different width and to single light-dark edges or contours.2. The movement of a narrow (< 0·3°) slit across the receptive field gives rise to average response histograms that are either unimodal, bimodal or multimodal. A slit of light has leading (light) and trailing (dark) edges. By increasing the width of the slit it was shown that a discharge peak in the histogram coincides with the passage of one or other of the two edges over a particular region (discharge centre) in the receptive field. Each edge has its own discharge centre which is fired when the edge has the correct orientation and direction of movement.3. The discharge centres in forty-three simple cell receptive fields were located by using one or more of the following stimuli for each cell:(i) slits of different width;(ii) single light and dark edges;(iii) a wide (3°) slit moved over a range of different velocities.The same locations were obtained when all three procedures were used on the same cell.4. Most cells (79%) discharged to both edges though not necessarily in the same direction of movement. The majority (72%) fired in only one direction and most commonly (51%) the cells responded to both edges in this one direction. In only 16% of cells did both types of edge excite in both directions of movement. When the one type of edge, light or dark, was considered, 84% of the cells were direction selective and, for these cells, the other edge fired only in the same direction (51%), in both directions (7%), only in the opposite direction (5%) or not at all (21%).5. Cells responding in one direction with a unimodal average response histogram may be responding to both edges, the two responses being concealed in the one discharge peak. The two discharge centres are then either nearly coincident or, more usually, slightly offset with respect to one another. Most commonly the dark edge centre is slightly in advance of the light edge centre.6. The discharge peaks in the bimodal and multimodal types come from discharge centres that are spatially separate, each centre firing to only one type of edge. In the case of the bimodal type the light edge centre always lies ahead of the dark edge centre.7. When a cell responds to a single edge in both directions of movement, the type of contrast effective in one direction is always the reverse of that in the other. When the cell responded in both directions, whether to one or both edges, most commonly a light edge discharge centre in one direction occupied approximately the same location in space as the dark edge centre in the reverse direction and vice versa for the other edge.8. Temporal aspects of the discharge of simple cells have been examined by recording the responses to moving slits and single edges over a wide range of velocities.
机译:1.通过制备对不同宽度的光移动狭缝和单个浅色边缘或轮廓的平均响应直方图,研究了猫纹状皮层中简单细胞接受场的特性。2。狭小(<0·3°)狭缝在接收场上的运动产生了单峰,双峰或多峰的平均响应直方图。狭缝具有前(亮)边缘和后(暗)边缘。通过增加狭缝的宽度,表明直方图中的放电峰值与两个边缘中的一个或另一个的通过在接收场中的特定区域(放电中心)上重合。每个边缘都有其自己的放电中心,当边缘具有正确的方向和运动方向时会触发该放电中心3。通过对每个细胞使用以下刺激中的一个或多个来定位43个简单细胞感受野中的放电中心:(i)不同宽度的狭缝;(ii)单一的明暗边缘;(iii)宽的(3 °)狭缝在不同的速度范围内移动。当在相同的电池上使用所有三种程序时,获得的位置相同.4。大多数细胞(79%)放电到两个边缘,但不一定沿相同的运动方向。大多数(72%)仅朝一个方向发射,最常见(51%)的电池对这一方向的两个边缘都做出反应。在只有16%的细胞中,两种类型的边缘都在两个运动方向上都激发。当考虑一种边缘(浅色或深色)时,有84%的单元具有方向选择性,而对于这些单元,另一条边缘仅在同一方向(51%)和两个方向(7%)发射,仅在相反方向(5%)或根本没有(21%)。5。用单峰平均响应直方图在一个方向上响应的单元可能对两个边缘都响应,这两个响应隐藏在一个放电峰值中。然后,两个放电中心几乎重合,或更通常彼此略有偏移。最常见的是,暗边缘中心稍早于亮边缘中心6。双峰和多峰类型的排放峰来自空间上分开的排放中心,每个排放中心仅触发一种类型的边缘。对于双峰型,浅色边缘中心始终位于深色边缘中心之前7。当单元在两个运动方向上对单个边缘做出响应时,在一个方向上有效的对比度类型始终与在另一个方向上相反。当电池在两个方向上都响应时,无论是对一个边缘还是对两个边缘都做出响应,最常见的是一个方向上的亮边缘放电中心在空间上的位置与暗边缘中心在相反方向上的位置大致相同,反之亦然。 。通过记录对大速度范围内移动狭缝和单个边缘的响应,可以检查简单细胞放电的时间方面。

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