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Regional dependency of bovine meniscus biomechanics on the internal structure and glycosaminoglycan content

机译:牛弯月面生物力学对内部结构和糖胺聚糖含量的区域依赖性

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Menisci play a major role in the mechanical function of the knee. They are subjected to large compressive forces and as a result and due to its avascular structure, menisci are prone to irreparable damage. Meniscectomy was once a common procedure for damaged menisci, however alternative approaches involving meniscus regeneration to restore function are of current interest. In order to enable these regenerative strategies, it is of utmost importance to initially establish he structure/property/function relationships of native menisci. Therefore, this study explores the influence of major constituents of the meniscal extracellular matrix; namely the glycosaminoglycan (GAG), and the collagen fibre orientation on the mechanical properties of the bovine meniscus. GAG distribution and mechanical properties are mapped with respect to depth and regional variance within the meniscus. Results show that the inner zone of the meniscus has a significantly larger quantity of GAG compared to the peripheral zone. The tibial and femoral layers contain a higher quantity of GAG than the midsection and collagen fibre alignment differed depending on region. Overall, it was established that the viscoelastic properties of the meniscus are determined by the co-dependent relationship between the solid and fluid fractions of the meniscus and this varied depending on region. The hydrophilic nature of the GAG molecules play an important role in maintaining the solid/fluid balance while collagen fibre orientation restricts fluid flow within tissue, combined these processes act to support the meniscus under compressive loads.
机译:Menisci在膝盖的机械功能中发挥重要作用。它们受到大的压缩力,结果,由于其缺血结构,Menisci易于损坏。 Menadcentomy曾经是损坏半月板的常见程序,但涉及弯月球再生恢复功能的替代方法是目前的兴趣。为了使这些再生策略能够最重要的是,最初是最初建立他的本土半月形的结构/财产/功能关系。因此,本研究探讨了半月形细胞外基质主要成分的影响;即糖胺聚糖(GAG)和胶原纤维取向对牛弯月面的机械性能。 GAG分布和机械性能相对于半月板内的深度和区域方差映射。结果表明,与周边区相比,弯月面的内部区域具有明显更大的堵塞。胫骨和股骨层含有比中腹部和胶原纤维对准较高量的呕吐,这取决于区域。总的来说,建立了半月板的粘弹性特性由弯月面的固体和流体分数之间的共同关系确定,并且这取决于区域。 GAG分子的亲水性在保持固体/液体平衡方面起着重要作用,而胶原纤维取向限制组织内的流体流动,则将这些工艺组合起来以支撑压缩载荷下的弯月面。

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