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克莱尔-毕晓普神经元对与视觉刺激在三维空间中的运动相关的视觉线索的反应。

Responsiveness of Clare-Bishop neurons to visual cues associated with motion of a visual stimulus in three-dimensional space.

作者信息

Toyama K, Komatsu Y, Kasai H, Fujii K, Umetani K

出版信息

Vision Res. 1985;25(3):407-14. doi: 10.1016/0042-6989(85)90066-5.

Abstract

Photic responsiveness of cells in the medial bank of the lateral suprasylvian cortex (Clare-Bishop area) was studied using a three-dimensional visual stimulator that reproduced two visual cues (motion disparity and change in size) for perception of three-dimensional motion of a visual stimulus. About one third of them (48/148) were selectively responsive to motion disparity corresponding to approaching (AP cells, n = 30) or recessive motion (RC cells, N = 18), another half to motion of retinal images in the same direction between the two eyes corresponding to fronto-parallel motion (FP cells, n = 75), and the remaining cells were rather equally responsive to these types of stimuli (NS cells, n = 25). More than a half of the AP (19/30) or RC (11/18) cells were also responsive to increase or decrease in stimulus size, respectively, and they were optimally activated by a combination of the motion and size stimuli while relatively few FP and NS cells were sensitive to change in stimulus size. These findings indicate that the Clare-Bishop cells encode three-dimensional motion on the basis of photic responsiveness to the motion and size cues.

摘要

使用三维视觉刺激器研究了外侧上薛氏回皮质(克莱尔 - 毕晓普区)内侧岸细胞的光反应性,该刺激器可再现两种视觉线索(运动视差和大小变化)以感知视觉刺激的三维运动。其中约三分之一(48/148)对与接近运动(AP细胞,n = 30)或后退运动(RC细胞,n = 18)相对应的运动视差有选择性反应,另一半对两眼之间视网膜图像沿相同方向的运动(对应于额平行运动,FP细胞,n = 75)有反应,其余细胞对这些类型的刺激反应相当(NS细胞,n = 25)。超过一半的AP细胞(19/30)或RC细胞(11/18)也分别对刺激大小的增加或减少有反应,并且它们在运动和大小刺激的组合下被最佳激活,而相对较少的FP和NS细胞对刺激大小的变化敏感。这些发现表明,克莱尔 - 毕晓普细胞基于对运动和大小线索的光反应性来编码三维运动。

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