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A micro-pool model for decision-related signals in visual cortical areas

机译:视觉皮层区域中与决策相关的信号的微池模型

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摘要

The study of sensory signaling in the visual cortex has been greatly advanced by the recording of neural activity simultaneously with the performance of a specific psychophysical task. Individual nerve cells may also increase their firing leading up to the particular choice or decision made on a single psychophysical trial. Understanding these signals is important because they have been taken as evidence that a particular nerve cell or group of nerve cells in the cortex is involved in the formation of the perceptual decision ultimately signaled by the organism. However, recent analyses show that the size of a decision-related change in firing in a particular neuron is not a secure basis for concluding anything about the contribution of a single neuron to the formation of a decision: rather the size of the decision-related firing is expected to be dominated by the extent to which the activation of a single neuron is correlated with the firing of the pool of neurons. The critical question becomes what defines membership of a population of neurons. This article presents the proposal that groups of neurons are naturally linked together by their connectivity, which in turn reflects the previous history of sensory stimulations. When a new psychophysical task is performed, a group of neurons relevant to the judgment becomes involved because the firing of some neurons in that group is strongly relevant to the task. This group of neurons is called a micro-pool. This article examines the consequences of such a proposal within the visual nervous system. The main focus is on the signals available from single neurons, but it argued that models of choice-related signals must scale up to larger numbers of neurons because MRI and MEG studies also show evidence of similar choice signals.
机译:通过同时记录神经活动和执行特定心理生理任务,大大促进了视觉皮层感觉信号的研究。单个神经细胞也可能会增加放电,从而导致在单个心理物理试验中做出特定选择或做出决定。了解这些信号很重要,因为已将它们作为证据,表明皮层中特定的神经细胞或一组神经细胞参与了最终由生物体发出信号的知觉决定的形成。但是,最近的分析表明,特定神经元放电过程中与决策相关的变化的大小并不是得出关于单个神经元对决策形成的贡献的结论的安全基础:而是与决策相关的大小预计放电将由单个神经元的激活与神经元池的放电相关的程度决定。关键问题变成了如何定义神经元群体的成员。本文提出了这样的提议,即神经元组通过它们的连接性自然地链接在一起,这反过来又反映了以前的感觉刺激历史。当执行新的心理物理任务时,涉及到与判断相关的一组神经元,因为该组中某些神经元的触发与任务密切相关。这组神经元称为微池。本文研究了这种提议在视觉神经系统中的后果。主要关注点是来自单个神经元的信号,但是它认为与选择相关的信号模型必须扩展到更多的神经元,因为MRI和MEG研究也显示了类似选择信号的证据。

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