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猕猴MT区中基于维度的特定任务注意对运动处理的塑造

Task-specific, dimension-based attentional shaping of motion processing in monkey area MT.

作者信息

Schledde Bastian, Galashan F Orlando, Przybyla Magdalena, Kreiter Andreas K, Wegener Detlef

机构信息

Brain Research Institute, Center for Cognitive Sciences, University of Bremen, Bremen, Germany.

Brain Research Institute, Center for Cognitive Sciences, University of Bremen, Bremen, Germany

出版信息

J Neurophysiol. 2017 Sep 1;118(3):1542-1555. doi: 10.1152/jn.00183.2017. Epub 2017 Jun 28.

Abstract

Nonspatially selective attention is based on the notion that specific features or objects in the visual environment are effectively prioritized in cortical visual processing. Feature-based attention (FBA), in particular, is a well-studied process that dynamically and selectively addresses neurons preferentially processing the attended feature attribute (e.g., leftward motion). In everyday life, however, behavior may require high sensitivity for an entire feature dimension (e.g., motion), but experimental evidence for a feature dimension-specific attentional modulation on a cellular level is lacking. Therefore, we investigated neuronal activity in macaque motion-selective mediotemporal area (MT) in an experimental setting requiring the monkeys to detect either a motion change or a color change. We hypothesized that neural activity in MT is enhanced when the task requires perceptual sensitivity to motion. In line with this, we found that mean firing rates were higher in the motion task and that response variability and latency were lower compared with values in the color task, despite identical visual stimulation. This task-specific, dimension-based modulation of motion processing emerged already in the absence of visual input, was independent of the relation between the attended and stimulating motion direction, and was accompanied by a spatially global reduction of neuronal variability. The results provide single-cell support for the hypothesis of a feature dimension-specific top-down signal emphasizing the processing of an entire feature class. Cortical processing serving visual perception prioritizes information according to current task requirements. We provide evidence in favor of a dimension-based attentional mechanism addressing all neurons that process visual information in the task-relevant feature domain. Behavioral tasks required monkeys to attend either color or motion, causing modulations of response strength, variability, latency, and baseline activity of motion-selective monkey area MT neurons irrespective of the attended motion direction but specific to the attended feature dimension.

摘要

非空间选择性注意基于这样一种观念,即视觉环境中的特定特征或物体在皮层视觉处理中得到有效优先处理。特别是基于特征的注意(FBA),是一个经过充分研究的过程,它动态且选择性地作用于优先处理被注意特征属性(如向左运动)的神经元。然而,在日常生活中,行为可能需要对整个特征维度(如运动)具有高敏感性,但在细胞水平上缺乏针对特征维度特异性注意调制的实验证据。因此,我们在一个实验环境中研究了猕猴运动选择性颞中区域(MT)的神经元活动,该实验要求猴子检测运动变化或颜色变化。我们假设当任务需要对运动有感知敏感性时,MT中的神经活动会增强。与此相符的是,我们发现尽管视觉刺激相同,但在运动任务中平均放电率更高,并且与颜色任务中的值相比,反应变异性和潜伏期更低。这种特定任务的、基于维度的运动处理调制在没有视觉输入时就已出现,与被注意和刺激的运动方向之间的关系无关,并且伴随着神经元变异性在空间上的整体降低。这些结果为强调对整个特征类别进行处理的特征维度特异性自上而下信号的假设提供了单细胞层面的支持。服务于视觉感知的皮层处理会根据当前任务要求对信息进行优先排序。我们提供证据支持一种基于维度的注意机制,该机制作用于在任务相关特征域中处理视觉信息的所有神经元。行为任务要求猴子注意颜色或运动,这会导致运动选择性猴子区域MT神经元的反应强度、变异性、潜伏期和基线活动发生调制,而与被注意的运动方向无关,但特定于被注意的特征维度。

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