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特定个体踝关节扭伤模拟对外在与内在生物力学因素的敏感性。

Sensitivity of a Subject-specific Ankle Sprain Simulation to Extrinsic Versus Intrinsic Biomechanical Factors.

作者信息

Yoder Adam J, Petrella Anthony J, Farrokhi Shawn

机构信息

DoD-VA Extremity Trauma and Amputation Center of Excellence, San Diego, CA, United States.

Department of Physical and Occupational Therapy, Naval Medical Center, San Diego, CA, United States.

出版信息

Front Bioeng Biotechnol. 2021 Dec 8;9:765331. doi: 10.3389/fbioe.2021.765331. eCollection 2021.

Abstract

Ankle sprains are the most common musculoskeletal injury in sport and military activity, despite existing prophylactic strategies. The purpose of this report was to develop a probabilistic simulation of lateral ankle sprains during single-limb drop landing, towards accelerating innovation in ankle sprain prevention. A deterministic, subject-specific musculoskeletal model was extended with automation and probabilistic distributions on sprain-related biomechanical factors. Probabilistic simulations were generated using traditional Monte Carlo techniques and the advanced mean value method, a more computationally-efficient approach. Predicted distributions of peak ankle joint rotations, velocities, and moments borne by supporting passive structures agreed favorably with the deterministic model and with reports of real sprain biomechanics. Parameter sensitivities identified that predictions were most strongly influenced by drop height, subtalar joint posture at contact, invertor/evertor co-activation, and passive ankle stiffness. The advanced mean value method predicted confidence bounds comparable to a 1000-trial Monte Carlo simulation, and required only 14 model evaluations and 4-min processing time. The extended probabilistic simulation may be useful to virtually test new prophylactic strategies for ankle sprains, and is made available for open-source use (https://simtk.org/projects/sprain-sim).

摘要

尽管存在预防性策略,但踝关节扭伤仍是运动和军事活动中最常见的肌肉骨骼损伤。本报告的目的是建立一个单腿下落着地时外侧踝关节扭伤的概率模拟模型,以加速踝关节扭伤预防方面的创新。一个确定性的、针对个体的肌肉骨骼模型通过对与扭伤相关的生物力学因素进行自动化和概率分布扩展而成。概率模拟使用传统的蒙特卡洛技术和先进均值法生成,后者是一种计算效率更高的方法。预测的踝关节峰值旋转、速度以及支撑被动结构所承受的力矩分布与确定性模型以及实际扭伤生物力学报告结果吻合良好。参数敏感性分析表明,预测结果受下落高度、接触时距下关节姿势、内翻肌/外翻肌共同激活以及被动踝关节僵硬度影响最大。先进均值法预测的置信区间与1000次试验的蒙特卡洛模拟相当,且仅需14次模型评估和4分钟处理时间。扩展的概率模拟模型可能有助于对踝关节扭伤的新预防策略进行虚拟测试,并且已开源供使用(https://simtk.org/projects/sprain-sim)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1956/8692785/96ee771905ea/fbioe-09-765331-g001.jpg

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