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首页> 外文期刊>Journal of mechanics in medicine and biology >SENSITIVITY OF MODEL-PREDICTED MUSCLE FORCES OF PATIENTS WITH CEREBRAL PALSY TO VARIATIONS IN MUSCLE-TENDON PARAMETERS
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SENSITIVITY OF MODEL-PREDICTED MUSCLE FORCES OF PATIENTS WITH CEREBRAL PALSY TO VARIATIONS IN MUSCLE-TENDON PARAMETERS

机译:脑瘫患者模型预测肌肉力对肌腱参数变化的敏感性

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Computational musculoskeletal modeling and simulation platforms are efficient tools to gain insight into the muscular coordination of patients with motor disabilities such as cerebral palsy (CP). Muscle force predictions from simulation programs are influenced by the architectural and contractile properties of muscle-tendon units. In this study, we aimed to evaluate the sensitivity of major lower limb muscle forces in patients with CP to changes in muscle-tendon parameters. Open-access datasets of children with CP (n=8) and healthy children (n=8) were considered. Monte Carlo analysis was executed to specify how sensitive the muscle forces to perturbations between +10% and -10% of the nominal value of the maximum isometric muscle force, optimal muscle fiber length, muscle pennation angle, tendon slack length, and maximum contraction velocity of muscle. The sensitivity analysis revealed that muscle forces of CP patients and healthy individuals were most sensitive to perturbations in the tendon slack length (p 0.05), except for the gracilis and sartorius muscles in which the proportion of optimal muscle fiber length to tendon slack length is higher than 1; forces of these two muscles were also sensitive to the optimal muscle fiber length. The results of this study are expected to contribute to our understanding of which parameters should be personalized when conducting musculoskeletal modeling and simulation of patients with CP.
机译:计算肌肉骨骼建模和仿真平台是深入了解脑瘫(CP)等运动障碍患者肌肉协调的有效工具。模拟程序的肌力预测受肌腱单元的结构和收缩特性的影响。在这项研究中,我们旨在评估CP患者主要下肢肌力对肌腱参数变化的敏感性。我们考虑了CP儿童(n=8)和健康儿童(n=8)的开放访问数据集。进行蒙特卡罗分析,以确定肌力对最大等长肌力标称值+10%和-10%之间的扰动、最佳肌纤维长度、肌肉旋转角、肌腱松弛长度和肌肉最大收缩速度的敏感性。敏感性分析显示,CP患者和健康人的肌力对肌腱松弛长度的扰动最为敏感(P0.05),但股薄肌和缝匠肌的最佳肌纤维长度与肌腱松弛长度的比例高于1;这两块肌肉的力量也对最佳肌纤维长度敏感。本研究的结果有望有助于我们理解在对CP患者进行肌肉骨骼建模和模拟时,哪些参数应该个性化。

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