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Ultrasound Elastography to Determine the Layered Mechanical Properties of Articular Cartilage and the Importance of Such Structural Characteristics under Load

机译:超声弹性造影以确定关节软骨的层状机械性能和负载下结构特征的重要性

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Articular cartilage is an important load bearing surface in joints. Prone to damage and with limited self-repair ability, it is of interest to tissue engineers. Tissue implant design requires full mechanical characterisation of healthy native tissue. A layered organisation of reinforcing collagen fibrils exists in healthy articular cartilage and is believed to be important for correct tissue function. However, the effect of this on the local depth-dependent elasticity is poorly characterised. In this study, quasi-static ultrasound elastography is used both to compare the depth-dependent elastic properties of cartilage structures with two different fibril arrangements and to monitor changes in the elastic properties of engineered samples during development. Results show global and local elastic properties of the native tissues and highlight the differences caused by fibril architecture. At increasing culture periods, results from the engineered tissue demonstrate an increase in elastic stiffness and the time taken to reach equilibrium under a quasi-static displacement. The study suggests suitability of ultrasound elastography for design and monitoring engineered articular cartilage.
机译:关节软骨是关节中的重要承载表面。易于损坏和有限的自我修复能力,组织工程师感兴趣。组织植入物设计需要完全机械表征健康的天然组织。在健康关节软骨中存在增强胶原型原纤维的分层组织,被认为对正确的组织功能很重要。然而,这对局部深度依赖性弹性的影响表现不佳。在该研究中,使用准静态超声弹性造影以比较软骨结构的深度依赖性弹性特性,并在发育过程中监测工程样品的弹性特性的变化。结果显示了本地组织的全局和局部弹性,并突出了原纤维架构引起的差异。在增加培养期时,工程化组织的结果表明弹性刚度的增加以及在准静态位移下达到平衡所需的时间。该研究表明超声弹性造影的设计和监测工程关节软骨的适用性。

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