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工作记忆过程中保持触觉刺激空间布局的大脑区域——“触觉空间速写本”?

Brain regions that retain the spatial layout of tactile stimuli during working memory - A 'tactospatial sketchpad'?

机构信息

Neurocomputation and Neuroimaging Unit (NNU), Department of Education and Psychology, Freie Universität Berlin, 14195, Berlin, Germany.

出版信息

Neuroimage. 2018 Sep;178:531-539. doi: 10.1016/j.neuroimage.2018.05.076. Epub 2018 May 31.

Abstract

Working memory (WM) studies have been essential for ascertaining how the brain flexibly handles mentally represented information in the absence of sensory stimulation. Most studies on the memory of sensory stimulus features have focused, however, on the visual domain. Here, we report a human WM study in the tactile modality where participants had to memorize the spatial layout of patterned Braille-like stimuli presented to the index finger. We used a whole-brain searchlight approach in combination with multi-voxel pattern analysis (MVPA) to investigate tactile WM representations without a priori assumptions about which brain regions code tactospatial information. Our analysis revealed that posterior and parietal cortices, as well as premotor regions, retained information across the twelve-second delay phase. Interestingly, parts of this brain network were previously shown to also contain information of visuospatial WM. Also, by specifically testing somatosensory regions for WM representations, we observed content-specific activation patterns in primary somatosensory cortex (SI). Our findings demonstrate that tactile WM depends on a distributed network of brain regions in analogy to the representation of visuospatial information.

摘要

工作记忆 (WM) 研究对于确定大脑在没有感官刺激的情况下如何灵活地处理心理呈现的信息至关重要。然而,大多数关于感觉刺激特征记忆的研究都集中在视觉领域。在这里,我们报告了一项人类触觉 WM 研究,参与者必须记住呈现在食指上的模式化盲文样刺激的空间布局。我们使用全脑搜索灯方法结合多体素模式分析 (MVPA) 来研究触觉 WM 表示,而无需对哪些大脑区域对触觉空间信息进行编码做出先验假设。我们的分析表明,后顶叶皮层以及运动前区域在十二秒的延迟阶段保留了信息。有趣的是,这个脑网络的一部分先前也被证明包含了视空间 WM 的信息。此外,通过专门测试体感区域的 WM 表示,我们在初级体感皮层 (SI) 中观察到了特定于内容的激活模式。我们的研究结果表明,触觉 WM 依赖于大脑区域的分布式网络,类似于对视觉空间信息的表示。

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