Suppr超能文献

肌肉模型参数缩放对等长足底屈肌力矩预测的影响。

Effect of muscle model parameter scaling for isometric plantar flexion torque prediction.

机构信息

Military Institute of Engineering, Department of Mechanical and Materials Engineering, Pça Gal. Tibúrcio 80, 22280-270 Rio de Janeiro-RJ, Brazil.

出版信息

J Biomech. 2009 Nov 13;42(15):2597-601. doi: 10.1016/j.jbiomech.2009.06.043. Epub 2009 Aug 8.

Abstract

This paper uses a EMG-driven Hill-type muscle model to estimate individual muscle forces of the triceps surae in isometric plantar flexion contractions. A uniform group of 20 young physical-active adult males was instructed to follow a specific contraction protocol with low (20%MVC) and medium-high (60%MVC) contractions, separated by relaxing intervals. The torque calculated by summing the individual muscle forces multiplied by the respective moment arms was compared to the torque measured by a dynamometer. Musculoskeletal parameters from the literature were used. Then, three different "correction factors" or bias have been applied on some of the muscle model parameters. These factors were based on anthropometric and dynamometric measurements: moment arm scaled by bimalleolar diameter, tendon slack length by leg length and optimal force by the maximum torque. Model torque agreement with dynamometer was recalculated with the parameter scales. It was observed that the relative torque estimation error decreased slightly but significantly when all factors were applied simultaneously (12.92+/-4.94% without scaling to 10.12+/-1.73%), which resulted mainly from the correction of the maximal muscle force parameter.

摘要

本文使用肌电图驱动的 Hill 型肌肉模型来估计等长跖屈收缩中小腿三头肌的个体肌肉力量。一组 20 名年轻的、积极活跃的成年男性被要求按照特定的收缩方案进行收缩,方案包括低(20%MVC)和中高(60%MVC)收缩,收缩之间有放松间隔。通过将各个肌肉力乘以相应的力臂来计算的扭矩与通过测力计测量的扭矩进行比较。使用了文献中的肌肉骨骼参数。然后,对一些肌肉模型参数应用了三种不同的“校正因子”或偏差。这些因子基于人体测量学和测力测量学:双踝直径标度的力臂、跟腱松弛长度与腿长的比例以及最大扭矩的最佳力。用参数标度重新计算了模型扭矩与测力计扭矩的吻合度。观察到,当同时应用所有因子时,相对扭矩估计误差略有但显著降低(未经比例缩放为 12.92+/-4.94%,降至 10.12+/-1.73%),这主要是由于最大肌肉力参数的校正。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验