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猫视觉大脑皮层神经元对图案相对运动的反应。

Responses of neurones in the cat's visual cerebral cortex to relative movement of patterns.

作者信息

Burns B D, Gassanov U, Webb A C

出版信息

J Physiol. 1972 Oct;226(1):133-51. doi: 10.1113/jphysiol.1972.sp009977.

Abstract
  1. We have investigated the responses of single neurones in the visual cerebral cortex of the unanaesthetized, isolated cat's forebrain to excitation of one retina with patterned light. The responses of twenty-six cells to the relative movement of two patterns in the visual field have been recorded.2. We used several forms of relative movement for stimulation, but all of them involved a change in the separation of two parallel and straight light-dark edges.3. Responses to this form of stimulation were compared with the responses of the same cells to simple movement, that is, movement of the same patterns without change of distance between their borders.4. All cells showed a response to relative movement that differed from their response to simple movement.5. The time-locked phasic response differed in 54% of the cells tested. Of cells responding in this way, 83% of tests produced an increased phasic response.6. Relative movement brought about changes in the mean frequency of discharge in 96% of the cells tested. 82% of these cells responded with an increased rate of firing.7. Movement relative to a coarse background pattern affected more neurones and produced a greater change in their behaviour than did movement relative to a fine-grained pattern.8. The neurones tested represented the central part of the visual field (0-10 degrees ); while all were affected by relative movement, those representing points furthest from the optic axis appeared to be most susceptible (we found no correlation between size of receptive field and distance from the optic axis).
摘要
  1. 我们研究了未麻醉的离体猫前脑视觉皮层中单个神经元对用图案光刺激一侧视网膜的反应。记录了26个细胞对视野中两种图案相对运动的反应。

  2. 我们使用了几种相对运动形式进行刺激,但所有形式都涉及两条平行且笔直的明暗边缘间距的变化。

  3. 将这种刺激形式下的反应与相同细胞对简单运动(即相同图案运动但其边界间距离不变)的反应进行了比较。

  4. 所有细胞对相对运动的反应与其对简单运动的反应不同。

  5. 在测试的细胞中,54%的细胞其锁时相位反应有所不同。以这种方式做出反应的细胞中,83%的测试产生了增强的相位反应。

  6. 相对运动使96%的测试细胞的平均放电频率发生了变化。其中82%的细胞放电率增加。

  7. 相对于粗糙背景图案的运动比相对于精细图案的运动影响更多神经元,并使其行为产生更大变化。

  8. 测试的神经元代表视野的中央部分(0 - 10度);虽然所有神经元都受到相对运动的影响,但代表离视轴最远点的那些神经元似乎最敏感(我们发现感受野大小与离视轴距离之间没有相关性)。

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