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初级视觉皮层的处理能力以及似动错觉的可能生理基础。

Processing capability of the primary visual cortex and possible physiologic basis for an apparent motion illusion.

作者信息

Shaw G L, Rinaldi P C, Pearson J C

出版信息

Exp Neurol. 1983 Jan;79(1):293-8. doi: 10.1016/0014-4886(83)90399-0.

Abstract

The primary visual cortex is known to process stimuli in a given part of the visual field such that divisions of the cortical column into orientation and ocular dominance minicolumns are present. Applying a model incorporating both the Hebb learning hypothesis and a Mountcastle-like organizational structure to the visual cortex, we predicted that the processing capabilities of the column involve dynamic interactions among minicolumns and are much greater than presently documented. In particular, processing of rotational stimuli in area 17 was suggested by the model. Motivated by this, a psychophysics experiment was conducted that demonstrated a spatial-temporal filling-in process in apparent motion. We have now presented this "human illusion" to cats and recorded from units in area 17 with results which clearly demonstrate striking phenomena not simply understood. The purpose of this note is to present our experimental paradigm with the preliminary results.

摘要

已知初级视觉皮层处理视野中特定部分的刺激,因此皮质柱会划分成方向和眼优势微柱。将一个结合了赫布学习假说和类似芒卡斯尔组织结构的模型应用于视觉皮层,我们预测柱的处理能力涉及微柱之间的动态相互作用,且比目前记录的要强大得多。特别是,该模型表明了17区对旋转刺激的处理。受此启发,我们进行了一项心理物理学实验,该实验证明了视错觉中的时空填充过程。我们现在已将这种“人类错觉”呈现给猫,并记录了17区神经元的活动,结果清楚地表明了一些难以简单理解的惊人现象。本笔记的目的是介绍我们的实验范式及初步结果。

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