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Poroelastic numerical modelling of natural and engineered cartilage based on in vitro tests

机译:基于体外试验的自然工程软骨组织数值模型

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The mechanisms underlying the ability of articular cartilage to withstand and distribute the loads applied across diarthrodial joints have been widely studied. Experimental tests have been done under several configurations to reveal the tissue response to mechanical stimuli, and theoretical models have been developed for the interpretation of the experimental results. The experiments demonstrated that the tissue is non-linear with strain, both in tension and in compression, non-linear with direction of stimulus, anisotropic in tension and compression, non-homogeneous with depth, resulting in depth dependent mechanical properties, and presents fluid dependent and fluid independent viscoelasticity. None of the models up to now developed is able to describe the whole set of responses of such a complex tissue. The purpose of this study was to develop a combined experimental-numerical approach for the proper description of the cartilage response under confined and unconfined compression. We defined a series of experimental tests to be performed on disks of natural and engineered cartilage and we developed a numerical model for cartilage, based on the biphasic theory, which potentially includes the tension-compression non-linearity, the strain non-linearity and the fluid independent viscoelasticity. The model successfully simulated the confined and unconfined compression experiments performed on disks of natural and engineered cartilage, and was also used to identify parameters of difficult experimental evaluation, such as the collagen stiffness and the permeability. In conclusion, the use of our model in combination with biomechanical experimental testing seems a valuable tool to analyze the mechanical properties of natural cartilage and the biofunctionality of tissue engineered cartilage.
机译:据广泛地研究了关节软骨能力和分布施加在腹间关节施加的载荷的机制。在若干配置下已经完成了实验测试,以揭示对机械刺激的组织反应,并且已经开发了理论模型用于解释实验结果。实验表明,组织是具有菌株的张力和压缩,刺激方向的非线性,张力方向,张力的各向异性,无均匀的深度,导致深度依赖性机械性能,并呈现液体依赖性和流体独立的粘弹性。现在没有型号的模型能够描述这种复杂组织的整组响应。本研究的目的是开发一种组合的实验 - 数值方法,用于在紧孔和无束缚的压缩下正确描述软骨响应。我们定义了一系列关于自然和工程化软骨磁盘进行的一系列实验测试,并且基于双相理论,我们开发了软骨的数值模型,这可能包括张力压缩非线性,应变非线性和流体独立粘弹性。该模型成功地模拟了对天然和工程软骨磁盘进行的限制和无束缚的压缩实验,也用于鉴定难以实验评价的参数,例如胶原刚度和渗透性。总之,使用我们的模型与生物力学实验测试的结合似乎有助于分析天然软骨的机械性能和组织工程软骨的生物功能性的工具。

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