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终末期膝关节骨关节炎中胫骨关节软骨、体内外关节力矩与静态对线的关系:一项 micro-CT 研究。

Relationships between tibial articular cartilage, in vivo external joint moments and static alignment in end-stage knee osteoarthritis: A micro-CT study.

机构信息

Medical Device Research Institute, College of Science and Engineering, Flinders University, Adelaide, South Australia, Australia.

Department of Oncology & Metabolism and Insigneo Institute for in silico Medicine, The University of Sheffield, Sheffield, UK.

出版信息

J Orthop Res. 2022 May;40(5):1125-1134. doi: 10.1002/jor.25140. Epub 2021 Jul 17.

Abstract

Biomechanical factors (e.g., joint loading) have a significant role in the progression of osteoarthritis (OA). However, some relationships between in vivo joint loading indices and tibial cartilage thickness are conflicting. This study investigated relationships between pre-operative in vivo external knee joint moments, joint alignment and regional tibial cartilage thickness using micro-CT in subjects with end-stage knee OA. Tibial plateaus from 25 patients that underwent knee replacement for OA were micro-CT scanned (17 µm/voxel). Prior to surgery, subjects underwent gait analysis to calculate external knee moments. The mechanical axis deviation (MAD) was obtained from pre-operative radiographs. Cartilage thickness (Cart.Th) was analyzed from micro-CT images, in anteromedial, anterolateral, posteromedial and posterolateral subregions of interest. Medial-to-lateral Cart.Th ratios were also explored. Relationships between Cart.Th and joint loading indices were examined using Pearson's correlations. Significant correlations were found between Cart.Th and joint loading indices, positive anteromedially with the first peak knee adduction moment (r = 0.55, p < 0.01) and external rotation moment (ERM; r = 0.52, p < 0.01), and negative with MAD (r = -0.76, p < 0.001). In the lateral regions, these correlations had opposite signs. The medial-to-lateral Cart.Th ratio correlated strongly with ERM (r = 0.63, p = 0.001) and MAD (r = -0.75, p < 0.001). Joint loading indices correlated with regional cartilage thickness values and their medial-to-lateral ratios in end-stage knee OA subjects, with higher regional loads corresponding to thinner cartilage. These relationships have the opposite sign compared to the subchondral bone microarchitecture found in our previous study on the same specimens, which may suggest a complementary bone-cartilage interplay in response to loading.

摘要

生物力学因素(例如关节负荷)在骨关节炎(OA)的进展中起着重要作用。然而,一些活体关节负荷指标与胫骨软骨厚度之间的关系存在冲突。本研究使用微 CT 研究了终末期膝 OA 患者术前活体膝关节外关节力矩、关节对线和胫骨软骨厚度之间的关系。对 25 例因 OA 行膝关节置换术的患者的胫骨平台进行微 CT 扫描(17μm/voxel)。在手术前,患者接受步态分析以计算外膝关节力矩。从术前 X 光片中获得机械轴偏差(MAD)。使用微 CT 图像分析软骨厚度(Cart.Th),在前内侧、前外侧、后内侧和后外侧感兴趣区域进行分析。还探索了内侧到外侧的 Cart.Th 比值。使用 Pearson 相关性检验检查 Cart.Th 与关节负荷指标之间的关系。在 Cart.Th 和关节负荷指标之间发现了显著的相关性,前内侧与第一峰值膝内收力矩(r=0.55,p<0.01)和外旋力矩(r=0.52,p<0.01)呈正相关,与 MAD 呈负相关(r=-0.76,p<0.001)。在外侧区域,这些相关性的符号相反。内侧到外侧的 Cart.Th 比值与 ERM(r=0.63,p=0.001)和 MAD(r=-0.75,p<0.001)密切相关。关节负荷指标与终末期膝 OA 患者的区域软骨厚度值及其内侧到外侧的比值相关,区域负荷越高,软骨越薄。与我们之前对同一标本进行的骨软骨微结构研究相比,这些关系的符号相反,这可能表明在负荷作用下,骨-软骨之间存在互补的相互作用。

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