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猴脑中颞区运动信号对全局朝向感知的加权池化的因果证据。

Causal Evidence of Motion Signals in Macaque Middle Temporal Area Weighted-Pooled for Global Heading Perception.

机构信息

Institute of Neuroscience, Key Laboratory of Primate Neurobiology, CAS Center for Excellence in Brain Science and intelligence technology, Chinese Academy of Sciences, Shanghai 200031, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Cereb Cortex. 2018 Feb 1;28(2):612-624. doi: 10.1093/cercor/bhw402.

Abstract

Accurate heading perception relies on visual information integrated across a wide field, that is, optic flow. Numerous computational studies have speculated how local visual information might be pooled by the brain to compute heading, but these hypotheses lack direct neurophysiological support. In the current study, we instructed human and monkey subjects to judge heading directions based on global optic flow. We showed that a local perturbation cue applied within only a small part of the visual field could bias the subjects' heading judgments, and shift the neuronal tuning in the macaque middle temporal (MT) area at the same time. Electrical microstimulation in MT significantly biased the animals' heading judgments predictable from the tuning of the stimulated neurons. Masking the visual stimuli within these neurons' receptive fields could not remove the stimulation effect, indicating a sufficient role of the MT signals pooled by downstream neurons for global heading estimation. Interestingly, this pooling is not homogeneous because stimulating neurons with excitatory surrounds produced relatively larger effects than stimulating neurons with inhibitory surrounds. Thus our data not only provide direct causal evidence, but also new insights into the neural mechanisms of pooling local motion information for global heading estimation.

摘要

准确的朝向感知依赖于大范围的视觉信息整合,即光流。许多计算研究推测大脑如何通过局部视觉信息来计算朝向,但这些假设缺乏直接的神经生理学支持。在当前的研究中,我们指导人类和猴子受试者根据全局光流判断朝向方向。我们发现,仅在视野的一小部分内应用局部扰动提示,可以使受试者的朝向判断产生偏差,同时也会使猕猴中颞(MT)区的神经元调谐发生变化。在 MT 中进行电微刺激可以显著地改变动物的朝向判断,这些判断可以从被刺激神经元的调谐中预测出来。在这些神经元的感受野内掩蔽视觉刺激并不能消除刺激效应,这表明下游神经元对全局朝向估计的 MT 信号进行了充分的整合。有趣的是,这种整合不是同质的,因为用兴奋性环绕刺激神经元比用抑制性环绕刺激神经元产生的效果相对更大。因此,我们的数据不仅提供了直接的因果证据,而且为用于全局朝向估计的局部运动信息的整合的神经机制提供了新的见解。

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