Ferguson S J, Bryant J T, Ganz R, Ito K
AO-ASIF Research Institute, Clavadelerstrasse, Davos Platz, Switzerland.
Clin Biomech (Bristol). 2000 Jul;15(6):463-8. doi: 10.1016/s0268-0033(99)00099-6.
The aim of the study is to investigate the labrum's ability to seal a pressurised layer of synovial fluid within the joint, and to study the influence of this sealing mechanism on cartilage deformation, interstitial fluid pressure and collagen solid matrix stresses.
Cartilage degeneration has been observed in conjunction with labrum pathology. However, little is known about the function of the labrum. Experimental observations have been reported which are consistent with a sealing function of the labrum.
The model was an axisymmetric geometric approximation of the acetabular and femoral cartilage layers and the surrounding labrum. A poroelastic formulation was used to account for the solid and fluid components of these hydrated tissues. A sensitivity analysis of the labrum material properties was carried out.
With a compressive load of 1200 N applied across the joint model, the labrum could seal a layer of pressurised fluid between the femur and acetabulum, thus preventing contact of the articulating surfaces. With this sealing effect, loads were transferred across the joint predominantly by uniform pressurisation of the interstitial fluid of the cartilage layers. In the absence of this sealing, strains within the solid matrix of the cartilage layers were higher (e.g. 20% vs. 3%).
The labrum can seal against fluid expression from the joint space. This sealing function protects the cartilage layers of the hip.
Current treatments for labrum damage and early arthrosis may compromise the sealing function of the labrum. With continued study of the function and importance of the labrum, new surgical repair strategies can be developed to maintain the overall function of the hip joint.
本研究旨在探究盂唇封闭关节内滑膜液压力层的能力,并研究这种封闭机制对软骨变形、组织液压力和胶原固体基质应力的影响。
已观察到软骨退变与盂唇病变相关。然而,关于盂唇的功能知之甚少。已有实验观察结果报告,与盂唇的封闭功能相符。
该模型是髋臼和股骨软骨层及周围盂唇的轴对称几何近似。采用多孔弹性公式来考虑这些含水组织的固体和流体成分。对盂唇材料特性进行了敏感性分析。
在关节模型上施加1200 N的压缩载荷时,盂唇可封闭股骨和髋臼之间的一层加压流体,从而防止关节面接触。有了这种封闭作用,载荷主要通过软骨层组织液的均匀加压在关节间传递。若没有这种封闭作用,软骨层固体基质内的应变会更高(例如20%对3%)。
盂唇可防止关节间隙内的液体流出。这种封闭功能可保护髋关节的软骨层。
目前针对盂唇损伤和早期关节炎的治疗可能会损害盂唇的封闭功能。随着对盂唇功能及其重要性的持续研究,可开发新的手术修复策略以维持髋关节的整体功能。