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Neural mechanisms of selective attention in the somatosensory system

机译:体感系统中选择性注意的神经机制

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Selective attention allows organisms to extract behaviorally relevant information while ignoring distracting stimuli that compete for the limited resources of their central nervous systems. Attention is highly flexible, and it can be harnessed to select information based on sensory modality, within-modality feature(s), spatial location, object identity, and/or temporal properties. In this review, we discuss the body of work devoted to understanding mechanisms of selective attention in the somatosensory system. In particular, we describe the effects of attention on tactile behavior and corresponding neural activity in somatosensory cortex. Our focus is on neural mechanisms that select tactile stimuli based on their location on the body (somatotopic-based attention) or their sensory feature (feature-based attention). We highlight parallels between selection mechanisms in touch and other sensory systems and discuss several putative neural coding schemes employed by cortical populations to signal the behavioral relevance of sensory inputs. Specifically, we contrast the advantages and disadvantages of using a gain vs. spike-spike correlation code for representing attended sensory stimuli. We favor a neural network model of tactile attention that is composed of frontal, parietal, and subcortical areas that controls somatosensory cells encoding the relevant stimulus features to enable preferential processing throughout the somatosensory hierarchy. Our review is based on data from noninvasive electrophysiological and imaging data in humans as well as single-unit recordings in nonhuman primates.
机译:选择性注意使生物体能够提取与行为相关的信息,而忽略分散注意力的刺激,这些刺激会竞争中枢神经系统有限的资源。注意是高度灵活的,并且可以利用它来基于感觉模态,模态内特征,空间位置,对象标识和/或时间特性来选择信息。在这篇综述中,我们讨论了致力于理解体感系统中选择性注意机制的工作主体。特别是,我们描述了注意对体感皮层的触觉行为和相应的神经活动的影响。我们的重点是神经机制,它们基于它们在身体上的位置(基于体位的注意力)或感觉特征(基于特征的注意力)来选择触觉刺激。我们重点介绍了触摸和其他感觉系统中选择机制之间的相似之处,并讨论了皮质种群采用的几种推定的神经编码方案来表示感觉输入的行为相关性。具体来说,我们对比了使用增益vs.尖峰相关代码表示有人参与的感觉刺激的优缺点。我们赞成由额叶,顶叶和皮层下区域组成的触觉注意力神经网络模型,该模型控制编码相关刺激特征的体感细胞,从而在整个体感层次中实现优先处理。我们的综述基于人类无创电生理和影像学数据以及非人类灵长类动物的单单位记录。

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