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定量评估膝关节局灶性软骨缺损引起的机械风险。

Quantitative Evaluation of the Mechanical Risks Caused by Focal Cartilage Defects in the Knee.

机构信息

Department of Applied Physics, University of Eastern Finland, POB 1627, FI-70211 Kuopio, Finland.

Cancer Center, Kuopio University Hospital, POB 100, FI-70029 KUH, Kuopio, Finland.

出版信息

Sci Rep. 2016 Nov 29;6:37538. doi: 10.1038/srep37538.

Abstract

Focal cartilage lesions can proceed to severe osteoarthritis or remain unaltered even for years. A method to identify high risk defects would be of utmost importance to guide clinical decision making and to identify the patients that are at the highest risk for the onset and progression of osteoarthritis. Based on cone beam computed tomography arthrography, we present a novel computational model for evaluating changes in local mechanical responses around cartilage defects. Our model, based on data obtained from a human knee in vivo, demonstrated that the most substantial alterations around the defect, as compared to the intact tissue, were observed in minimum principal (compressive) strains and shear strains. Both strain values experienced up to 3-fold increase, exceeding levels previously associated with chondrocyte apoptosis and failure of collagen crosslinks. Furthermore, defects at the central regions of medial tibial cartilage with direct cartilage-cartilage contact were the most vulnerable to loading. Also locations under the meniscus experienced substantially increased minimum principal strains. We suggest that during knee joint loading particularly minimum principal and shear strains are increased above tissue failure limits around cartilage defects which might lead to osteoarthritis. However, this increase in strains is highly location-specific on the joint surface.

摘要

病灶性软骨损伤可进展为严重的骨关节炎,也可能多年保持不变。找到一种能识别高危缺陷的方法至关重要,这有助于指导临床决策,并确定那些发生和进展为骨关节炎风险最高的患者。本研究基于锥形束 CT 关节造影术,提出了一种用于评估软骨损伤周围局部力学响应变化的新型计算模型。我们的模型基于从体内膝关节获得的数据,与完整组织相比,缺陷周围的最小主(压缩)应变和剪切应变的变化最为显著。两种应变值增加了近 3 倍,超过了先前与软骨细胞凋亡和胶原交联失败相关的水平。此外,内侧胫骨软骨中央区域与直接软骨-软骨接触的缺陷最容易受到负荷作用。半月板下的位置也经历了明显的最小主应变增加。我们认为,在膝关节负荷作用下,软骨缺陷周围的最小主应变和剪切应变显著增加,超过了组织失效极限,这可能导致骨关节炎。然而,这种应变的增加在关节表面具有高度的位置特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4a8/5126640/caca0270dac2/srep37538-f1.jpg

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