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Neural Substrate For A High Degree Of Noise Tolerance In Visual Flow Discrimination In Macaque Dorsal Mst Area

机译:猕猴背区Mst区视觉流辨别中高度耐噪声的神经基质

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To reveal the underlying cellular mechanisms of the noise tolerance in the discrimination of the direction of visual flow, we analyzed both response behaviors of directionly selective cells in the d-MST of the macaque and discrimination properties of human subjects for visual flow by using large-field texture flow. The stimulus was a 32X32-pixel random checker pattern refreshed at every 16 msec in which coherency of the motion of the texture was systematically controlled by a special purpose computer. The discrimination performance of the human observers showed a high degree of tolerance for directional noise. Field-type D-cells in d-MST also showed response properties which closely resembled human discrimination performance.These results strongly suggest that cells in d-MST area play a crucial role in the generation of signals for perception of global motion.
机译:为了揭示在辨别视觉流向方面的噪声容忍性的潜在细胞机制,我们通过使用大尺寸图谱分析了猕猴d-MST中定向选择性细胞的响应行为和人类对视觉流的辨别特性。场纹理流。刺激是每16毫秒刷新一次32X32像素的随机检查器图案,其中纹理运动的连贯性由专用计算机系统地控制。人类观察者的辨别性能显示出对方向噪声的高度容忍度。 d-MST中的场型D细胞还显示出与人类歧视表现非常相似的响应特性。这些结果强烈表明d-MST区域中的细胞在感知全局运动的信号产生中起着至关重要的作用。

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