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空间注意力缺陷与猕猴颞叶皮质中的一个区域存在因果关系。

Spatial Attention Deficits Are Causally Linked to an Area in Macaque Temporal Cortex.

机构信息

Laboratory of Sensorimotor Research, National Eye Institute, NIH, Bethesda, MD 20892, USA.

Laboratory of Sensorimotor Research, National Eye Institute, NIH, Bethesda, MD 20892, USA.

出版信息

Curr Biol. 2019 Mar 4;29(5):726-736.e4. doi: 10.1016/j.cub.2019.01.028. Epub 2019 Feb 14.

Abstract

Spatial neglect is a common clinical syndrome involving disruption of the brain's attention-related circuitry, including the dorsocaudal temporal cortex. In macaques, the attention deficits associated with neglect can be readily modeled, but the absence of evidence for temporal cortex involvement has suggested a fundamental difference from humans. To map the neurological expression of neglect-like attention deficits in macaques, we measured attention-related fMRI activity across the cerebral cortex during experimental induction of neglect through reversible inactivation of the superior colliculus and frontal eye fields. During inactivation, monkeys exhibited hallmark attentional deficits of neglect in tasks using either motion or non-motion stimuli. The behavioral deficits were accompanied by marked reductions in fMRI attentional modulation that were strongest in a small region on the floor of the superior temporal sulcus; smaller reductions were also found in frontal eye fields and dorsal parietal cortex. Notably, direct inactivation of the mid-superior temporal sulcus (STS) cortical region identified by fMRI caused similar neglect-like spatial attention deficits. These results identify a putative macaque homolog to temporal cortex structures known to play a central role in human neglect.

摘要

空间忽视是一种常见的临床综合征,涉及大脑与注意力相关的回路的破坏,包括背侧颞叶皮层。在猕猴中,与忽视相关的注意力缺陷很容易被建模,但缺乏颞叶皮层参与的证据表明,猕猴与人类存在根本的区别。为了在猕猴中映射出类似忽视的注意力缺陷的神经表达,我们在通过可逆性抑制上丘和额眼区来诱导忽视的实验过程中,测量了整个大脑皮层的注意力相关 fMRI 活动。在抑制过程中,猴子在使用运动或非运动刺激的任务中表现出忽视的标志性注意力缺陷。行为缺陷伴随着 fMRI 注意力调节的明显减少,在颞上沟底部的一个小区域最强;在前额眼区和背侧顶叶皮层也发现了较小的减少。值得注意的是,通过 fMRI 确定的中颞上回(STS)皮质区域的直接抑制会导致类似的忽视样空间注意力缺陷。这些结果确定了一个假定的猕猴同源物,与在人类忽视中起核心作用的颞叶结构有关。

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