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阈下视觉运动启动的神经特征:脑活动与功能连接图谱

The Neural Signature of Subliminal Visuomotor Priming: Brain Activity and Functional Connectivity Profiles.

作者信息

Ulrich Martin, Kiefer Markus

机构信息

Department of Psychiatry, University of Ulm, 89075 Ulm, Germany.

出版信息

Cereb Cortex. 2016 Jun;26(6):2471-82. doi: 10.1093/cercor/bhv070. Epub 2015 Apr 8.

Abstract

Unconscious visuomotor priming defined as the advantage in reaction time (RT) or accuracy for target shapes mapped to the same (congruent condition) when compared with a different (incongruent condition) motor response as a preceding subliminally presented prime shape has been shown to modulate activity within a visuomotor network comprised of parietal and frontal motor areas in previous functional magnetic resonance imaging (fMRI) studies. The present fMRI study investigated whether, in addition to changes in brain activity, unconscious visuomotor priming results in a modulation of functional connectivity profiles. Activity associated with congruent compared with incongruent trials was lower in the bilateral inferior and medial superior frontal gyri, in the inferior parietal lobules, and in the right caudate nucleus and adjacent portions of the thalamus. Functional connectivity increased under congruent relative to incongruent conditions between ventral visual stream areas (e.g., calcarine, fusiform, and lingual gyri), the precentral gyrus, the supplementary motor area, posterior parietal areas, the inferior frontal gyrus, and the caudate nucleus. Our findings suggest that an increase in coupling between visuomotor regions, reflecting higher efficiency of processing, is an important neural mechanism underlying unconscious visuomotor priming, in addition to changes in the magnitude of activation.

摘要

无意识视觉运动启动被定义为,与作为先前阈下呈现的启动形状的不同(不一致条件)运动反应相比,对映射到相同(一致条件)目标形状的反应时间(RT)或准确性具有优势,在先前的功能磁共振成像(fMRI)研究中已表明,无意识视觉运动启动可调节由顶叶和额叶运动区组成的视觉运动网络内的活动。本fMRI研究调查了除大脑活动变化外,无意识视觉运动启动是否会导致功能连接图谱的调节。与不一致试验相比,双侧额下回和额上回内侧、顶下小叶、右侧尾状核以及丘脑相邻部分在一致试验中相关的活动较低。在一致条件下相对于不一致条件,腹侧视觉流区域(如距状裂、梭状回和舌回)、中央前回、辅助运动区、顶叶后部区域、额下回和尾状核之间的功能连接增加。我们的研究结果表明,视觉运动区域之间耦合的增加反映了更高的处理效率,这是无意识视觉运动启动的重要神经机制,此外还有激活强度的变化。

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