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术中髌股关节运动学采集:临床研究设置的设计、测试与验证

Intraoperative Patellofemoral Kinematic Acquisition: The Design, Testing, and Validation of a Setup for Clinical Studies.

作者信息

Favaro Alberto, Bonanzinga Tommaso, Avallone Giulia, Bignozzi Simone, Costantini Marta, Iacono Francesco

机构信息

IRCCS Humanitas Research Hospital, Via Manzoni 56, Rozzano, 20089 Milan, Italy.

Department of Biomedical Sciences, Humanitas University, Via Rita Levi Montalcini 4, Pieve Emanuele, 20072 Milan, Italy.

出版信息

J Clin Med. 2024 Dec 20;13(24):7784. doi: 10.3390/jcm13247784.

Abstract

: Abnormalities in patellar tracking, often overlooked in surgical planning, have been identified as a contributing factor to total knee arthroplasty (TKA) complications, including anterior knee pain, patellar subluxation, and dislocation. This study aims to evaluate the repeatability of a novel intraoperative setup for assessing patellofemoral kinematics and its interaction with prosthesis design and positioning during surgery. This setup may support personalized alignment techniques in TKA, potentially improving surgical outcomes. : Kinematic data were collected under both native and post-TKA conditions, and the Repeatability Coefficient (RC), Intraclass Correlation Coefficient (ICC), and Limits of Agreement of the Mean were calculated to assess measurement reliability. : RC values indicated high repeatability, with patellar flexion averaging an RC of 1°. Rotation and tilt demonstrated an RC below 1° post-mid-flexion, while patellar shift maintained an RC of approximately 1.6 mm. ICC and the extended Bland and Altman analysis showed an excellent agreement (ICC > 0.9) and an expected mean difference of zero for all the measured parameters. Measurements were consistent across both flexion and extension, and between native and post-TKA conditions. : The proposed setup for intraoperative patellofemoral kinematic assessment demonstrated high repeatability and practical utility. The approach was found to be non-intrusive to patellar motion tracking and can be robustly integrated into the intraoperative workflow. This method provides a reliable approach for real-time patellar tracking, which may contribute to more personalized and precise TKA procedures, potentially reducing post-surgical dissatisfaction and complications.

摘要

髌股轨迹异常在手术规划中常被忽视,现已被确认为全膝关节置换术(TKA)并发症的一个促成因素,这些并发症包括膝前疼痛、髌骨半脱位和脱位。本研究旨在评估一种用于评估髌股运动学的新型术中设置的可重复性,以及它在手术过程中与假体设计和定位的相互作用。这种设置可能支持TKA中的个性化对线技术,有望改善手术效果。

在自然状态和TKA术后条件下收集运动学数据,并计算重复性系数(RC)、组内相关系数(ICC)和均值一致性界限,以评估测量的可靠性。

RC值表明具有高可重复性,髌骨屈曲平均RC为1°。在屈曲中期后,旋转和倾斜的RC低于1°,而髌骨移位的RC保持在约1.6mm。ICC以及扩展的布兰德和奥特曼分析显示,所有测量参数都具有极好的一致性(ICC>0.9)且预期平均差异为零。测量在屈曲和伸展过程中以及自然状态和TKA术后条件之间都是一致的。

所提出的用于术中髌股运动学评估的设置显示出高可重复性和实际效用。该方法被发现对髌骨运动跟踪无干扰,并且可以稳健地整合到术中工作流程中。这种方法为实时髌骨跟踪提供了一种可靠的途径,这可能有助于实现更个性化和精确的TKA手术,有望减少术后的不满意和并发症。

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