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帕金森病患者丘脑底核的步态编码原理。

Principles of gait encoding in the subthalamic nucleus of people with Parkinson's disease.

机构信息

Department of Clinical Neurosciences, Lausanne University Hospital (CHUV) and University of Lausanne (UNIL), Lausanne CH-1011, Switzerland.

NeuroRestore, Defitech Centre for Interventional Neurotherapies, CHUV, UNIL, and Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne CH-1011, Switzerland.

出版信息

Sci Transl Med. 2022 Sep 7;14(661):eabo1800. doi: 10.1126/scitranslmed.abo1800.

Abstract

Disruption of subthalamic nucleus dynamics in Parkinson's disease leads to impairments during walking. Here, we aimed to uncover the principles through which the subthalamic nucleus encodes functional and dysfunctional walking in people with Parkinson's disease. We conceived a neurorobotic platform embedding an isokinetic dynamometric chair that allowed us to deconstruct key components of walking under well-controlled conditions. We exploited this platform in 18 patients with Parkinson's disease to demonstrate that the subthalamic nucleus encodes the initiation, termination, and amplitude of leg muscle activation. We found that the same fundamental principles determine the encoding of leg muscle synergies during standing and walking. We translated this understanding into a machine learning framework that decoded muscle activation, walking states, locomotor vigor, and freezing of gait. These results expose key principles through which subthalamic nucleus dynamics encode walking, opening the possibility to operate neuroprosthetic systems with these signals to improve walking in people with Parkinson's disease.

摘要

帕金森病患者的丘脑底核动力学紊乱导致行走时出现障碍。在这里,我们旨在揭示丘脑底核在帕金森病患者的功能性和非功能性行走中编码的原理。我们设计了一个神经机器人平台,嵌入了一个等动测力椅,使我们能够在受控条件下分解行走的关键组件。我们利用这个平台在 18 名帕金森病患者中进行了演示,证明了丘脑底核编码了腿部肌肉激活的启动、终止和幅度。我们发现,相同的基本原理决定了站立和行走时腿部肌肉协同作用的编码。我们将这一理解转化为一个机器学习框架,该框架可以解码肌肉激活、行走状态、运动活力和步态冻结。这些结果揭示了丘脑底核动力学编码行走的关键原理,为利用这些信号操作神经假肢系统以改善帕金森病患者的行走提供了可能性。

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