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猕猴颞下皮质中物体视觉图像的编码

Coding visual images of objects in the inferotemporal cortex of the macaque monkey.

作者信息

Tanaka K, Saito H, Fukada Y, Moriya M

机构信息

Laboratory for Neural Information Processing, RIKEN Institute, Saitama, Japan.

出版信息

J Neurophysiol. 1991 Jul;66(1):170-89. doi: 10.1152/jn.1991.66.1.170.

DOI:10.1152/jn.1991.66.1.170
PMID:1919665
Abstract
  1. The inferotemporal cortex (IT) has been thought to play an essential and specific role in visual object discrimination and recognition, because a lesion of IT in the monkey results in a specific deficit in learning tasks that require these visual functions. To understand the cellular basis of the object discrimination and recognition processes in IT, we determined the optimal stimulus of individual IT cells in anesthetized, immobilized monkeys. 2. In the posterior one-third or one-fourth of IT, most cells could be activated maximally by bars or disks just by adjusting the size, orientation, or color of the stimulus. 3. In the remaining anterior two-thirds or three-quarters of IT, most cells required more complex features for their maximal activation. 4. The critical feature for the activation of individual anterior IT cells varied from cell to cell: a complex shape in some cells and a combination of texture or color with contour-shape in other cells. 5. Cells that showed different types of complexity for the critical feature were intermingled throughout anterior IT, whereas cells recorded in single penetrations showed critical features that were related in some respects. 6. Generally speaking, the critical features of anterior IT cells were moderately complex and can be thought of as partial features common to images of several different natural objects. The selectivity to the optimal stimulus was rather sharp, although not absolute. We thus propose that, in anterior IT, images of objects are coded by combinations of active cells, each of which represents the presence of a particular partial feature in the image.
摘要
  1. 颞下皮质(IT)被认为在视觉物体辨别和识别中起着至关重要且特定的作用,因为猴子的IT损伤会导致在需要这些视觉功能的学习任务中出现特定缺陷。为了理解IT中物体辨别和识别过程的细胞基础,我们在麻醉、固定的猴子身上确定了单个IT细胞的最佳刺激。2. 在IT的后三分之一或四分之一区域,通过调整刺激的大小、方向或颜色,大多数细胞可以被条形或圆盘形刺激最大程度地激活。3. 在IT其余的前三分之二或四分之三区域,大多数细胞需要更复杂的特征才能被最大程度地激活。4. 激活单个前IT细胞的关键特征因细胞而异:一些细胞需要复杂形状,另一些细胞需要纹理或颜色与轮廓形状的组合。5. 对于关键特征表现出不同类型复杂性的细胞在前IT区域中相互交织,而在单次穿刺记录的细胞显示出在某些方面相关的关键特征。6. 一般来说,前IT细胞的关键特征中等复杂,可以被认为是几种不同自然物体图像共有的部分特征。对最佳刺激的选择性相当敏锐,尽管不是绝对的。因此我们提出,在前IT区域,物体图像由活跃细胞的组合编码,每个细胞代表图像中特定部分特征的存在。

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Coding visual images of objects in the inferotemporal cortex of the macaque monkey.猕猴颞下皮质中物体视觉图像的编码
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