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抓握-挤压适应物体顺应性的变化导致初级体感和运动皮层之间的动态β波段通讯。

Grasp-squeeze adaptation to changes in object compliance leads to dynamic beta-band communication between primary somatosensory and motor cortices.

机构信息

School of Engineering, Brown University, Providence, RI, USA.

Department of Neuroscience, Brown University, Providence, RI, USA.

出版信息

Sci Rep. 2022 Apr 26;12(1):6776. doi: 10.1038/s41598-022-10871-z.

Abstract

In asking the question of how the brain adapts to changes in the softness of manipulated objects, we studied dynamic communication between the primary sensory and motor cortical areas when nonhuman primates grasp and squeeze an elastically deformable manipulandum to attain an instructed force level. We focused on local field potentials recorded from S1 and M1 via intracortical microelectrode arrays. We computed nonparametric spectral Granger Causality to assess directed cortico-cortical interactions between these two areas. We demonstrate that the time-causal relationship between M1 and S1 is bidirectional in the beta-band (15-30 Hz) and that this interareal communication develops dynamically as the subjects adjust the force of hand squeeze to reach the target level. In particular, the directed interaction is strongest when subjects are focused on maintaining the instructed force of hand squeeze in a steady state for several seconds. When the manipulandum's compliance is abruptly changed, beta-band interareal communication is interrupted for a short period (~ 1 s) and then is re-established once the subject has reached a new steady state. These results suggest that transient beta oscillations can provide a communication subspace for dynamic cortico-cortical S1-M1 interactions during maintenance of steady sensorimotor states.

摘要

在研究大脑如何适应所操纵物体柔软度变化的问题时,我们研究了当非人类灵长类动物抓取和挤压一个具有弹性变形的操纵杆以达到规定的力水平时,初级感觉和运动皮质区之间的动态通讯。我们专注于通过颅内微电极阵列从 S1 和 M1 记录的局部场电位。我们计算了非参数谱 Granger 因果关系,以评估这两个区域之间的皮质间有向相互作用。我们证明,M1 和 S1 之间的时间因果关系在β频带(15-30 Hz)中是双向的,并且随着受试者调整手挤压的力以达到目标水平,这种区域间通讯是动态发展的。特别是,当受试者专注于将手挤压的规定力保持在稳定状态几秒钟时,定向相互作用最强。当操纵杆的顺应性突然改变时,β频带区域间通讯会中断一小段时间(约 1 秒),然后在受试者达到新的稳定状态后重新建立。这些结果表明,瞬态β振荡可以为维持稳定感觉运动状态期间 S1-M1 之间的动态皮质间相互作用提供一个通讯子空间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c09/9042850/5e364973a0a3/41598_2022_10871_Fig1_HTML.jpg

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