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迈向使用肌电图信息三维模型对运动进行建模:应用于脑瘫

Toward modeling locomotion using electromyography-informed 3D models: application to cerebral palsy.

作者信息

Sartori M, Fernandez J W, Modenese L, Carty C P, Barber L A, Oberhofer K, Zhang J, Handsfield G G, Stott N S, Besier T F, Farina D, Lloyd D G

机构信息

Department of Trauma Surgery, Orthopedics and Plastic Surgery, Neurorehabilitation Systems Research Group, University Medical Center Göttingen, Göttingen, Germany.

Auckland Bioengineering Institute, University of Auckland, Auckland, New Zealand.

出版信息

Wiley Interdiscip Rev Syst Biol Med. 2017 Mar;9(2). doi: 10.1002/wsbm.1368. Epub 2016 Dec 21.

Abstract

This position paper proposes a modeling pipeline to develop clinically relevant neuromusculoskeletal models to understand and treat complex neurological disorders. Although applicable to a variety of neurological conditions, we provide direct pipeline applicative examples in the context of cerebral palsy (CP). This paper highlights technologies in: (1) patient-specific segmental rigid body models developed from magnetic resonance imaging for use in inverse kinematics and inverse dynamics pipelines; (2) efficient population-based approaches to derive skeletal models and muscle origins/insertions that are useful for population statistics and consistent creation of continuum models; (3) continuum muscle descriptions to account for complex muscle architecture including spatially varying material properties with muscle wrapping; (4) muscle and tendon properties specific to CP; and (5) neural-based electromyography-informed methods for muscle force prediction. This represents a novel modeling pipeline that couples for the first time electromyography extracted features of disrupted neuromuscular behavior with advanced numerical methods for modeling CP-specific musculoskeletal morphology and function. The translation of such pipeline to the clinical level will provide a new class of biomarkers that objectively describe the neuromusculoskeletal determinants of pathological locomotion and complement current clinical assessment techniques, which often rely on subjective judgment. WIREs Syst Biol Med 2017, 9:e1368. doi: 10.1002/wsbm.1368 For further resources related to this article, please visit the WIREs website.

摘要

本立场文件提出了一种建模流程,以开发与临床相关的神经肌肉骨骼模型,用于理解和治疗复杂的神经系统疾病。尽管该流程适用于多种神经疾病,但我们在脑性瘫痪(CP)的背景下提供了直接的流程应用示例。本文重点介绍了以下技术:(1)从磁共振成像开发的患者特异性节段刚体模型,用于逆运动学和逆动力学流程;(2)基于群体的高效方法,用于推导骨骼模型以及对群体统计和连续模型的一致创建有用的肌肉起止点;(3)连续肌肉描述,以考虑复杂的肌肉结构,包括随肌肉包裹而空间变化的材料特性;(4)CP特有的肌肉和肌腱特性;以及(5)基于神经的肌电图信息方法,用于肌肉力预测。这代表了一种新颖的建模流程,首次将肌电图提取的神经肌肉行为破坏特征与用于模拟CP特异性肌肉骨骼形态和功能的先进数值方法相结合。将这种流程转化到临床水平将提供一类新的生物标志物,客观地描述病理性运动的神经肌肉骨骼决定因素,并补充当前通常依赖主观判断的临床评估技术。《WIREs系统生物学与医学》2017年,9:e1368。doi:10.1002/wsbm.1368 有关本文的更多资源,请访问WIREs网站。

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