用于慢性中风的生物力学评估方法:非线性方法范围综述

Marta Freitas, Francisco Pinho, Liliana Pinho, Sandra Silva, Vânia Figueira, J. Vilas-Boas, Augusta Silva
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引用次数: 0

摘要

人类运动的非线性和动态系统分析近来越来越广泛,目的是更好地反映复杂性如何影响运动系统的适应性,尤其是中风后。本范围综述的主要目的是总结用于分析中风后人体运动的动力学、运动学和肌电图数据的非线性测量方法。研究遵循 PRISMA-ScR 指南,确定了资格标准、研究人群、概念和背景框架。所考察的研究发表于 2013 年 1 月 1 日至 2023 年 4 月 12 日之间,语言为英语或葡萄牙语,并被本研究选定的数据库收录:PubMed®、Web of Science®、Institute of Electrical and Electronics Engineers®、Science Direct® 和 Google Scholar®。在 763 篇文章中,共有 14 篇符合纳入标准。确定的非线性测量包括熵(n = 11)、分形分析(n = 1)、短期局部发散指数(n = 1)、最大 Floquet 乘数(n = 1)和 Lyapunov 指数(n = 1)。这些研究主要针对不同的运动任务:伸手抓取(n = 2)、伸手指向(n = 1)、手臂追踪(n = 2)、肘关节屈曲(n = 5)、肘关节伸展(n = 1)、手腕和手指向上伸展(抬起)(n = 1)、膝关节伸展(n = 1)和行走(n = 4)。在研究慢性中风后成年人的人体运动复杂性时,首选熵测量法,尤其是样本熵。运动学评估主要通过运动捕捉系统进行,重点是上肢的关节角度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biomechanical Assessment Methods Used in Chronic Stroke: A Scoping Review of Non-Linear Approaches
Non-linear and dynamic systems analysis of human movement has recently become increasingly widespread with the intention of better reflecting how complexity affects the adaptability of motor systems, especially after a stroke. The main objective of this scoping review was to summarize the non-linear measures used in the analysis of kinetic, kinematic, and EMG data of human movement after stroke. PRISMA-ScR guidelines were followed, establishing the eligibility criteria, the population, the concept, and the contextual framework. The examined studies were published between 1 January 2013 and 12 April 2023, in English or Portuguese, and were indexed in the databases selected for this research: PubMed®, Web of Science®, Institute of Electrical and Electronics Engineers®, Science Direct® and Google Scholar®. In total, 14 of the 763 articles met the inclusion criteria. The non-linear measures identified included entropy (n = 11), fractal analysis (n = 1), the short-term local divergence exponent (n = 1), the maximum Floquet multiplier (n = 1), and the Lyapunov exponent (n = 1). These studies focused on different motor tasks: reaching to grasp (n = 2), reaching to point (n = 1), arm tracking (n = 2), elbow flexion (n = 5), elbow extension (n = 1), wrist and finger extension upward (lifting) (n = 1), knee extension (n = 1), and walking (n = 4). When studying the complexity of human movement in chronic post-stroke adults, entropy measures, particularly sample entropy, were preferred. Kinematic assessment was mainly performed using motion capture systems, with a focus on joint angles of the upper limbs.
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