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通过调制内在α 波段连通性来编码手动灵巧性。

Encoding Manual Dexterity through Modulation of Intrinsic α Band Connectivity.

机构信息

Department of Psychology, Sapienza University of Rome, Rome 00185, Italy.

IRCCS Santa Lucia Foundation, Rome 00179, Italy.

出版信息

J Neurosci. 2024 May 15;44(20):e1766232024. doi: 10.1523/JNEUROSCI.1766-23.2024.

Abstract

The human hand possesses both consolidated motor skills and remarkable flexibility in adapting to ongoing task demands. However, the underlying mechanisms by which the brain balances stability and flexibility remain unknown. In the absence of external input or behavior, spontaneous (intrinsic) brain connectivity is thought to represent a prior of stored memories. In this study, we investigated how manual dexterity modulates spontaneous functional connectivity in the motor cortex during hand movement. Using magnetoencephalography, in 47 human participants (both sexes), we examined connectivity modulations in the α and β frequency bands at rest and during two motor tasks (i.e., finger tapping or toe squeezing). The flexibility and stability of such modulations allowed us to identify two groups of participants with different levels of performance (high and low performers) on the nine-hole peg test, a test of manual dexterity. In the α band, participants with higher manual dexterity showed distributed decreases of connectivity, specifically in the motor cortex, increased segregation, and reduced nodal centrality. Participants with lower manual dexterity showed an opposite pattern. Notably, these patterns from the brain to behavior are mirrored by results from behavior to the brain. Indeed, when participants were divided using the median split of the dexterity score, we found the same connectivity patterns. In summary, this experiment shows that a long-term motor skill-manual dexterity-influences the way the motor systems respond during movements.

摘要

人手既具备整合的运动技能,又具有适应持续任务需求的非凡灵活性。然而,大脑平衡稳定性和灵活性的潜在机制仍不清楚。在没有外部输入或行为的情况下,自发(内在)的大脑连接被认为代表了存储记忆的先验。在这项研究中,我们调查了手运动过程中,手的灵巧度如何调节运动皮层中的自发性功能连接。使用脑磁图,我们在 47 名人类参与者(男女皆有)中,在休息和进行两项运动任务(即手指敲击或脚趾挤压)时,检查了α和β频带中的连接调制。这些调制的灵活性和稳定性使我们能够识别出在九孔钉测试(一种手灵巧度测试)中表现不同(高和低表现者)的两组参与者。在α频带中,手灵巧度较高的参与者表现出连接的分布式减少,特别是在运动皮层中,聚集度增加,节点中心性降低。手灵巧度较低的参与者表现出相反的模式。值得注意的是,这些从大脑到行为的模式与从行为到大脑的结果相呼应。事实上,当参与者根据灵巧度得分的中位数分割时,我们发现了相同的连接模式。总之,这项实验表明,长期的运动技能——手的灵巧度——影响了运动系统在运动过程中的反应方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c68e/11097277/52123a0abfee/jneuro-44-e1766232024-g001.jpg

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