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一种评估运动学测量不确定性对从松弛度测量中估计的膝关节韧带特性的影响的方法。

A Methodology to Evaluate the Effects of Kinematic Measurement Uncertainties on Knee Ligament Properties Estimated From Laxity Measurements.

机构信息

Department of Materials and Production, Aalborg University, Fibigerstraede 16, Aalborg East DK-9220, Denmark.

Faculty of Engineering Technology, University of Twente, Horst Complex W104, P.O. Box 217, Enschede 7500 AE, The Netherlands.

出版信息

J Biomech Eng. 2021 Jun 1;143(6). doi: 10.1115/1.4050027.

Abstract

Ligaments are important joint stabilizers but assessing their mechanical properties remain challenging. We developed a methodology to investigate the effects of kinematic measurement uncertainty during laxity tests on optimization-based estimation of ligament properties. We applied this methodology to a subject-specific knee model with known ligament properties as inputs and compared the estimated to the known knee ligament properties under the influence of noise. Four different sets of laxity tests were simulated with an increasing number of load cases, capturing anterior/posterior, varus/valgus, and internal/external rotation loads at 0 deg and 30 deg of knee flexion. 20 samples of uniform random noise ([-0.5,0.5] mm and degrees) were added to each set and fed into an optimization routine that subsequently estimated the ligament properties based on the noise targets. We found a large range of estimated ligament properties (stiffness ranges of 5.97 kN, 7.64 kN, 8.72 kN, and 3.86 kN; reference strain ranges of 3.11%, 2.53%, 1.88%, and 1.58% for anterior cruciate ligament (ACL), posterior cruciate ligament (PCL), medical collateral ligament (MCL), and lateral collateral ligament (LCL), respectively) for three sets of laxity tests, including up to 22 load cases. A set of laxity tests with 60 load cases kept the stiffness and reference strain ranges below 470 N per unit strain and 0.85%, respectively. These results illustrate that kinematic measurement noise have a large impact on estimated ligament properties and we recommend that future studies assess and report both the estimated ligament properties and the associated uncertainties due to kinematic measurement noise.

摘要

韧带是重要的关节稳定结构,但评估其力学性能仍然具有挑战性。我们开发了一种方法来研究在松弛测试过程中运动学测量不确定性对基于优化的韧带特性估计的影响。我们将该方法应用于具有已知韧带特性的特定于个体的膝关节模型作为输入,并在噪声影响下比较了估计值与已知的膝关节韧带特性。模拟了四组不同的松弛测试,每组增加了更多的载荷情况,以捕获膝关节 0°和 30°屈曲时的前/后、内/外翻和内/外旋载荷。对每组松弛测试添加了 20 个均匀随机噪声([-0.5,0.5]mm 和度)样本,并将其输入到优化程序中,该程序随后根据噪声目标估计韧带特性。我们发现,在三组松弛测试中,估计的韧带特性范围很广(前交叉韧带(ACL)、后交叉韧带(PCL)、内侧副韧带(MCL)和外侧副韧带(LCL)的刚度范围分别为 5.97 kN、7.64 kN、8.72 kN 和 3.86 kN;参考应变范围分别为 3.11%、2.53%、1.88%和 1.58%),包括多达 22 个载荷情况。一组 60 个载荷情况的松弛测试将刚度和参考应变范围保持在每单位应变 470 N 以下和 0.85%以下。这些结果表明,运动学测量噪声对估计的韧带特性有很大影响,我们建议未来的研究评估并报告由于运动学测量噪声而导致的估计韧带特性及其相关不确定性。

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