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人体肌肉骨骼网络的结构、功能和控制。

Structure, function, and control of the human musculoskeletal network.

机构信息

Department of Bioengineering, University of Pennsylvania, Philadelphia, Pennsylvania, United States of America.

Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, United States of America.

出版信息

PLoS Biol. 2018 Jan 18;16(1):e2002811. doi: 10.1371/journal.pbio.2002811. eCollection 2018 Jan.

Abstract

The human body is a complex organism, the gross mechanical properties of which are enabled by an interconnected musculoskeletal network controlled by the nervous system. The nature of musculoskeletal interconnection facilitates stability, voluntary movement, and robustness to injury. However, a fundamental understanding of this network and its control by neural systems has remained elusive. Here we address this gap in knowledge by utilizing medical databases and mathematical modeling to reveal the organizational structure, predicted function, and neural control of the musculoskeletal system. We constructed a highly simplified whole-body musculoskeletal network in which single muscles connect to multiple bones via both origin and insertion points. We demonstrated that, using this simplified model, a muscle's role in this network could offer a theoretical prediction of the susceptibility of surrounding components to secondary injury. Finally, we illustrated that sets of muscles cluster into network communities that mimic the organization of control modules in primary motor cortex. This novel formalism for describing interactions between the muscular and skeletal systems serves as a foundation to develop and test therapeutic responses to injury, inspiring future advances in clinical treatments.

摘要

人体是一个复杂的有机体系,其宏观力学性能由神经系统控制的相互连接的肌肉骨骼网络所赋予。肌肉骨骼连接的本质促进了稳定性、自主性运动和对损伤的鲁棒性。然而,对于这个网络及其神经系统控制的基本理解仍然难以捉摸。在这里,我们利用医学数据库和数学建模来揭示肌肉骨骼系统的组织结构、预测功能和神经控制,从而填补了这一知识空白。我们构建了一个高度简化的全身肌肉骨骼网络,其中单个肌肉通过起点和止点连接到多个骨骼。我们证明,使用这个简化模型,肌肉在网络中的作用可以为周围组件对二次损伤的易感性提供理论预测。最后,我们说明了肌肉群聚类成类似于初级运动皮层中控制模块组织的网络社区。这种用于描述肌肉和骨骼系统之间相互作用的新形式主义为开发和测试治疗损伤的治疗反应提供了基础,为临床治疗的未来发展提供了灵感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eba6/5773011/6292da186c72/pbio.2002811.g001.jpg

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