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首页> 外文期刊>Journal of biomechanical engineering. >Changes in Knee Joint Mechanics After Medial Meniscectomy Determined With a Poromechanical Model
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Changes in Knee Joint Mechanics After Medial Meniscectomy Determined With a Poromechanical Model

机译:用多孔机模型确定内侧半月切除术后膝关节力学的变化

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摘要

The menisci play a vital role in the mechanical function of knee joint. Unfortunately, meniscal tears often occur. Meniscectomy is a surgical treatment for meniscal tears; however, mechanical changes in the knee joint after meniscectomy is a risk factor to osteoarthritis (OA). The objective of this study was to investigate the altered cartilage mechanics of different medial meniscectomies using a poromechanical model of the knee joint. The cartilaginous tissues were modeled as nonlinear fibril-reinforced porous materials with full saturation. The ligaments were considered as anisotropic hyperelastic and reinforced by a fibrillar collagen network. A compressive creep load of ? body weight was applied in full extension of the right knee during 200?s standing. Four finite element models were developed to simulate different meniscectomies of the joint using the intact model as the reference for comparison. The modeling results showed a higher load support in the lateral than medial compartment in the intact joint, and the difference in the load share between the compartments was augmented with medial meniscectomy. Similarly, the contact and fluid pressures were higher in the lateral compartment. On the other hand, the medial meniscus in the normal joint experienced more loading than the lateral one. Furthermore, the contact pressure distribution changed with creep, resulting in a load transfer between cartilage and meniscus within each compartment while the total load born by the compartment remained unchanged. This study has quantified the altered contact mechanics on the type and size of meniscectomies, which may be used to understand meniscal tear or support surgical decisions.
机译:Menisci在膝关节的机械功能中发挥着重要作用。不幸的是,经常发生半月板眼泪。 Menadycectomy是半月岩眼泪的手术治疗;然而,乳白切除术后膝关节的机械变化是对骨关节炎(OA)的危险因素。本研究的目的是使用膝关节的多孔机械模型来研究不同内侧末期切除术的改变的软骨力学。软骨组织被建模为非线性原纤维增强多孔材料,具有全饱和。韧带被认为是由纤维胶原网络的各向异性的高级弹性和加固。压缩蠕变载荷?在200?S站立期间,体重在右膝关节的全延伸时施加。开发了四种有限元模型以使用完整模型作为比较的参考来模拟关节的不同折射术。建模结果在完整关节中的内侧隔室中显示出较高的负载支撑,并且在内侧裂缝切除术中增加了隔室之间的负载份额的差异。类似地,横向室中的接触和流体压力较高。另一方面,正常关节中的内侧弯月面经历了比横向的载荷更多。此外,接触压力分布随着蠕变而改变,导致每个隔室内的软骨和弯月面之间的负载转移,而舱室出生的总负荷保持不变。该研究已经量化了改变的接触机制对折弯术的类型和大小,可用于理解半月板撕裂或支持外科决策。

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