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Development and evaluation of a new methodology for Soft Tissue Artifact compensation in the lower limb

机译:下肢软组织伪影补偿新方法的开发与评价

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Skin Marker (SM) based motion capture is the most widespread technique used for motion analysis. Yet, the accuracy is often hindered by Soft Tissue Artifact (STA). This is a major issue in clinical gait analysis where kinematic results are used for decision-making. It also has a considerable influence on the results of rigid body and Finite Element (FE) musculoskeletal models that rely on SM-based kinematics to estimate muscle, contact and ligament forces. Current techniques devised to compensate for STA, in particular multi-body optimization methods, often consider simplified joint models. Although joint personalization with anatomical constraints has improved kinematic estimation, these models yet don't represent a fully reliable solution to the STA problem, thus allowing us to envisage an alternative approach. In this perspective, we propose to develop a conceptual FE-based model of the lower limb for STA compensation and evaluate it for 66 healthy subjects under level walking motor task. Both hip and knee joint kinematics were analyzed, considering both rotational and translational joint motion. Results showed that STA caused underestimation of the hip joint kinematics (up to 2.2 degrees) for all rotational DoF, and overestimation of knee joint kinematics (up to 12 degrees) except in flexion/extension. Joint kinematics, in particular the knee joint, appeared to be sensitive to soft tissue stiffness parameters (rotational and translational mean difference up to 1.5 degrees and 3.4 mm). Analysis of the results using alternative joint representations highlighted the versatility of the proposed modeling approach. This work paves the way for using personalized models to compensate for STA in healthy subjects and different activities. (c) 2021 Elsevier Ltd. All rights reserved.
机译:基于皮肤标记(SM)的运动捕捉是用于运动分析的最广泛的技术。然而,软组织伪影(STA)往往会影响准确性。这是临床步态分析中的一个主要问题,在临床步态分析中,运动学结果用于决策。它还对基于SM运动学来估计肌肉、接触力和韧带力的刚体和有限元(FE)肌肉骨骼模型的结果有相当大的影响。目前设计的用于补偿STA的技术,特别是多体优化方法,通常考虑简化的联合模型。尽管带解剖约束的关节个性化改进了运动学估计,但这些模型并不能完全可靠地解决STA问题,因此我们可以设想一种替代方法。从这个角度出发,我们提出了一个基于有限元的下肢STA补偿概念模型,并对66名健康受试者在水平行走运动任务下进行了评估。分析髋关节和膝关节运动学,同时考虑旋转和平移关节运动。结果表明,STA导致所有旋转自由度的髋关节运动学低估(高达2.2度),而膝关节运动学高估(高达12度),屈膝/伸展除外。关节运动学,尤其是膝关节,似乎对软组织刚度参数(旋转和平移平均差高达1.5度和3.4mm)敏感。使用替代关节表示法对结果进行的分析突出了所提出建模方法的多功能性。这项工作为使用个性化模型来补偿健康受试者和不同活动中的STA铺平了道路。(c)2021爱思唯尔有限公司保留所有权利。

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