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一种基于标准六自由度步态模式的前交叉韧带损伤动态膝关节功能评分系统。

A dynamic knee function scoring system for anterior cruciate ligament injuries based on normative six-degree-of-freedom gait pattern.

作者信息

Li Junqiao, Mao Yunhe, Lan Tian, Huangfu Liang, Xiong Yan, Li Jian

机构信息

Sports Medicine Center, West China Hospital, Sichuan University, Chengdu, China.

Department of Orthopedics and Orthopedic Research Institute, West China Hospital, Sichuan University, Chengdu, China.

出版信息

BMC Musculoskelet Disord. 2024 Dec 30;25(1):1083. doi: 10.1186/s12891-024-08208-0.

Abstract

BACKGROUND

Traditional examinations of anterior cruciate ligament (ACL) injuries focus primarily on static assessments and lack the ability to evaluate dynamic knee stability. Hence, a dynamic scoring system for knee function is needed in clinical settings. This study aimed to propose a dynamic scoring system based on a large sample of normative six-degree-of-freedom (6-DOF) knee kinematics during gait, and validate its correlation with conventional outcome measurements in assessing ACL-injured knees.

METHODS

A total of 500 healthy Chinese participants were enrolled to establish a large dataset. The 6-DOF kinematics of both knees during gait were recorded using an infrared navigation three-dimensional portable knee motion analysis system. Based on the large sample dataset, a novel 6-DOF scoring system was developed using the dynamic time warping algorithm. To further validate the scoring system, an additional 83 patients with ACL injuries were included, and their preoperative dynamic knee kinematics assessment and patient-reported outcome measurements (PROMs) were recorded. Spearman's correlation coefficient (ρ) was used to determine the correlations between the 6-DOF score and the Lysholm score, International Knee Documentation Committee (IKDC) subjective score, and Tegner activity scale.

RESULTS

The mean values of adduction/abduction, internal/external rotation, flexion/extension, anterior/posterior translation, proximal/distal translation, and medial/lateral translation in the 500 healthy participants were 10.07 ± 4.04°, 15.13 ± 4.85°, 60.56 ± 6.07°, 1.79 ± 0.75 cm, 1.58 ± 0.54 cm, and 1.10 ± 0.42 cm, respectively. The mean preoperative 6-DOF score, Lysholm score, IKDC subjective score, and Tegner activity scale of the 83 ACL-injured patients were 74.29 ± 7.23, 70.26 ± 17.55, 66.78 ± 15.79, and 2.28 ± 1.56, respectively. The 6-DOF score was significantly correlated with the Lysholm score (ρ = 0.375, P < 0.001) and Tegner activity scale (ρ = 0.273, P = 0.016) for the ACL-injured patients. No significant correlation was found between the 6-DOF score and the IKDC subjective score (ρ = 0.145, P = 0.208).

CONCLUSION

This study proposed a normative 6-DOF knee kinematic reference range for the Chinese population based on a large sample dataset. The 6-DOF dynamic score was developed accordingly and proven to be significantly correlated with the Lysholm score and the Tegner activity scale, showing the potential to provide comprehensive and meaningful information on dynamic knee function and stability for patients with ACL injuries in the future.

摘要

背景

传统的前交叉韧带(ACL)损伤检查主要侧重于静态评估,缺乏评估膝关节动态稳定性的能力。因此,临床环境中需要一种膝关节功能的动态评分系统。本研究旨在基于大量正常步态下六自由度(6-DOF)膝关节运动学样本,提出一种动态评分系统,并验证其在评估ACL损伤膝关节时与传统结局测量指标的相关性。

方法

共纳入500名健康中国参与者以建立一个大型数据集。使用红外导航三维便携式膝关节运动分析系统记录步态期间双膝的6-DOF运动学数据。基于该大型样本数据集,采用动态时间规整算法开发了一种新的6-DOF评分系统。为进一步验证该评分系统,又纳入了83例ACL损伤患者,并记录了他们术前的膝关节动态运动学评估和患者报告结局测量指标(PROMs)。采用Spearman相关系数(ρ)来确定6-DOF评分与Lysholm评分、国际膝关节文献委员会(IKDC)主观评分以及Tegner活动量表之间的相关性。

结果

500名健康参与者内收/外展、内/外旋转、屈伸、前后平移、近端/远端平移以及内侧/外侧平移的平均值分别为10.07±4.04°、15.13±4.85°、60.56±6.07°、1.79±0.75 cm、1.58±0.54 cm以及1.10±0.42 cm。83例ACL损伤患者术前的平均6-DOF评分、Lysholm评分、IKDC主观评分以及Tegner活动量表分别为74.29±7.23、70.26±17.55、66.78±15.79以及2.28±1.56。对于ACL损伤患者,6-DOF评分与Lysholm评分(ρ=0.375,P<0.001)以及Tegner活动量表(ρ=0.273,P=0.016)显著相关。6-DOF评分与IKDC主观评分之间未发现显著相关性(ρ=0.145,P=0.208)。

结论

本研究基于大型样本数据集提出了中国人群的正常6-DOF膝关节运动学参考范围。相应地开发了6-DOF动态评分,并证明其与Lysholm评分和Tegner活动量表显著相关,显示出未来有可能为ACL损伤患者提供关于膝关节动态功能和稳定性的全面且有意义信息的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5dd/11684231/169e5136f9a7/12891_2024_8208_Fig1_HTML.jpg

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