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猕猴MT区神经元的运动整合是局部的,而非全局的。

Motion integration by neurons in macaque MT is local, not global.

作者信息

Majaj Najib J, Carandini Matteo, Movshon J Anthony

机构信息

Center for Neural Science, New York University, New York, New York 10003, USA.

出版信息

J Neurosci. 2007 Jan 10;27(2):366-70. doi: 10.1523/JNEUROSCI.3183-06.2007.

DOI:10.1523/JNEUROSCI.3183-06.2007
PMID:17215397
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3039841/
Abstract

Direction-selective neurons in primary visual cortex have small receptive fields that encode the motions of local features. These motions often differ from the motion of the object to which they belong and must therefore be integrated elsewhere. A candidate site for this integration is visual cortical area MT (V5), in which cells with large receptive fields compute the motion of patterns. Previous studies of motion integration in MT have used stimuli that fill the receptive field, and thus do not test whether motion information is really integrated across this whole area. For each MT neuron, we identified two regions ("patches") within the receptive field that were approximately equally effective in driving responses. We then measured responses to plaids whose component gratings overlapped within a patch, and compared them with responses to the same component gratings presented in separate patches. Cells that were selective for the direction of motion of the whole pattern when the gratings overlapped lost this selectivity when the gratings were separated and became selective instead for the direction of motion of the individual components. If MT cells simply pooled all of the inputs that endow them with a receptive field, they would encode all of the motions in the receptive field as belonging to a single object. Our results indicate instead that critical elements of the computations underlying pattern-direction selectivity in MT are done locally, on a scale smaller than the whole receptive field.

摘要

初级视觉皮层中的方向选择性神经元具有小的感受野,这些感受野编码局部特征的运动。这些运动通常与其所属物体的运动不同,因此必须在其他地方进行整合。这种整合的一个候选部位是视觉皮层MT区(V5),该区中具有大感受野的细胞会计算图案的运动。之前对MT区运动整合的研究使用的刺激填满了感受野,因此并未测试运动信息是否真的在整个区域进行了整合。对于每个MT神经元,我们在其感受野内确定了两个区域(“斑块”),这两个区域在驱动反应方面的效果大致相同。然后,我们测量了对其组成光栅在一个斑块内重叠的方格的反应,并将其与对在单独斑块中呈现的相同组成光栅的反应进行比较。当光栅重叠时,对整个图案运动方向具有选择性的细胞,在光栅分开时失去了这种选择性,转而对单个组成部分的运动方向具有选择性。如果MT细胞只是简单地汇总所有赋予它们感受野的输入,它们会将感受野中的所有运动编码为属于单个物体。相反,我们的结果表明,MT区图案方向选择性计算的关键要素是在局部进行的,其尺度小于整个感受野。

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