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A human knee joint model considering fluid pressure and fiber orientation in cartilages and menisci.

机译:考虑到软骨和半月板中的流体压力和纤维方向的人膝关节模型。

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摘要

Articular cartilages and menisci are generally considered to be elastic in the published human knee models, and thus the fluid-flow dependent response of the knee has not been explored using finite element analysis. In the present study, the fluid pressure and site-specific collagen fiber orientation in the cartilages and menisci were implemented into a finite element model of the knee using fibril-reinforced modeling previously proposed for articular cartilage. The geometry of the knee was obtained from magnetic resonance imaging of a healthy young male. The bones were considered to be elastic due to their greater stiffness compared to that of the cartilages and menisci. The displacements obtained for fast ramp compression were essentially same as those for instantaneous compression of equal magnitude with the fluid being trapped in the tissues, which was expected. However, a clearly different pattern of displacements was predicted by an elastic model using a greater Young's modulus and a Poisson's ratio for nearly incompressible material. The results indicated the influence of fluid pressure and fiber orientation on the deformation of articular cartilage in the knee. The fluid pressurization in the femoral cartilage was somehow affected by the site-specific fiber directions. The peak fluid pressure in the femoral condyles was reduced by three quarters when no fibril reinforcement was assumed. The present study indicates the necessity of implementing the fluid pressure and anisotropic fibril reinforcement in articular cartilage for a more accurate understanding of the mechanics of the knee.
机译:在已发表的人类膝关节模型中,通常认为关节软骨和半月板具有弹性,因此尚未使用有限元分析来探讨膝关节的流量依赖性反应。在本研究中,使用先前提出的用于关节软骨的纤维增强模型,将软骨和半月板中的流体压力和特定位置的胶原纤维取向实施到了膝盖的有限元模型中。膝盖的几何结构是从一名健康的年轻男性的磁共振成像获得的。由于与软骨和半月板相比,它们的刚度更高,因此骨骼被认为具有弹性。对于快速斜坡压缩所获得的位移与在流体被捕获在组织中的同等大小的瞬时压缩所获得的位移基本相同。然而,对于几乎不可压缩的材料,使用更大的杨氏模量和泊松比的弹性模型可以预测出明显不同的位移模式。结果表明,流体压力和纤维取向对膝关节软骨变形的影响。特定部位的纤维方向会以某种方式影响股骨软骨中的液体加压。当没有原纤维增强时,股骨dy的峰值流体压力降低了四分之三。本研究表明在关节软骨中实施流体压力和各向异性原纤维增强的必要性,以便更准确地了解膝盖的力学。

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