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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >A scaling method to individualise muscle force capacities in musculoskeletal models of the hand and wrist using isometric strength measurements
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A scaling method to individualise muscle force capacities in musculoskeletal models of the hand and wrist using isometric strength measurements

机译:使用等距强度测量的手腕骨骼模型中肌肉肌肉力能力的缩放方法

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摘要

Abstract Because the force-generating capacities of muscles are currently estimated using anatomical data obtained from cadaver specimens, hand musculoskeletal models provide only a limited representation of the specific features of individual subjects. A scaling method is proposed to individualise muscle capacities using dynamometric measurements and electromyography. For each subject, a strength profile was first defined by measuring net moments during eight maximum isometric contractions about the wrist and metacarpophalangeal joints. The capacities of the five muscle groups were then determined by adjusting several parameters of an initial musculoskeletal model using an optimisation procedure which minimised the differences between measured moments and model estimates. Sixteen volunteers, including three particular participants (one climber, one boxer and one arthritic patient), were recruited. Compared with the initial literature-based model, the estimated subject-specific capacities were on average five times higher for the wrist muscles and twice as high for the finger muscles. The adjustments for particular subjects were consistent with their expected specific characteristics, e.g. high finger flexor capacities for the climber. Using the subject-specific capacities, the model estimates were markedly modified. The proposed protocol and scaling procedure can capture the specific characteristics of the participants and improved the representation of their capacities in the musculoskeletal model.
机译:摘要由于使用从尸体标本获得的解剖数据估计肌肉的力产生容量,因此手肌肉骨骼模型仅提供各个受试者的特定特征的有限表示。使用测量测量测量和肌电学进行缩放方法对个性化肌肉能量进行缩放方法。对于每个受试者,首先通过在八个关于腕部和Metacarpophalangeal关节的八个最大等距收缩中测量净时刻来定义强度剖面。然后通过使用优化过程调节初始肌肉骨骼模型的若干参数来确定五个肌肉组的容量,这最小化了测量的时刻和模型估计之间的差异。招募了十六个志愿者,包括三个特定参与者(一个登山者,一个拳击手和一个关节炎患者)。与初始文献为基础的模型相比,估计的主题特定能力平均为手腕肌肉的五倍,手指肌肉的两倍高。特定受试者的调整与其预期的特定特征一致,例如,它们是一致的,例如,用于登山者的高手指屈肌能力。使用主题特定的容量,模型估计明显修改。所提出的协议和缩放程序可以捕获参与者的特定特征,并改善了它们在肌肉骨骼模型中的能力的表现。

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