Experimental Characterization of the Human Meniscal Tissue

O. Barrera, E. Bologna, M. Zingales, G. Alotta
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引用次数: 4

Abstract

The meniscus plays a critical role in load transmission, stability and energy dissipation in the knee joint. Loss of the meniscus leads to joint degeneration and osteoarthritis. In a number of cases replacement of the resected meniscal tissue by a synthetic implant might avoid the articular cartilage degeneration. None of the available implants presents optimal biomechanics characteristic due to the fact the biomechanics functionality of the meniscus is not yet fully understood. Mimicking the native biomechanical characteristics of the menisci seems to be the key factor in meniscus replacement functioning. This is extremely challenging due to its complex inhomogeneous microstructure, the lack of a full experimental characterization of the material properties and the lack of 3D theoretical, numerical and computational models which can reproduce and validate the experimental results. The objective of this work is to present the experimental characterization of the anisotropic meniscal tissue at the macroscale. Innovative Biaxial tests have been conducted and the results are new to the literature.
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人体半月板组织的实验表征
半月板在膝关节的载荷传递、稳定性和能量耗散中起着至关重要的作用。半月板的缺失会导致关节变性和骨关节炎。在许多情况下,用人工植入物替代切除的半月板组织可以避免关节软骨退变。由于半月板的生物力学功能尚未完全了解,因此没有一种可用的植入物具有最佳的生物力学特性。模仿半月板的自然生物力学特征似乎是半月板置换功能的关键因素。由于其复杂的非均匀微观结构,缺乏材料特性的完整实验表征以及缺乏可以再现和验证实验结果的3D理论,数值和计算模型,这是极具挑战性的。本工作的目的是在宏观尺度上介绍各向异性半月板组织的实验表征。创新的双轴试验已经进行,结果是新的文献。
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