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Collagen Damage Location in Articular Cartilage Differs if Damage is Caused by Excessive Loading Magnitude or Rate

机译:如果由于过大的加载幅度或速率导致损伤则关节软骨中胶原蛋白的损伤位置会有所不同

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摘要

Collagen damage in articular cartilage is considered nearly irreversible and may be an early indication of cartilage degeneration. Surface fibrillation and internal collagen damage may both develop after overloading. This study hypothesizes that damage develops at these different locations, because the distribution of excessive strains varies with loading rate as a consequence of time-dependent cartilage properties. The objective is to explore whether collagen damage could preferentially occur superficially or internally, depending on the magnitude and rate of overloading. Bovine osteochondral plugs were compressed with a 2 mm diameter indenter to 15, 25, 35 and 45 N, and at 5, 60 and 120 mm/min. Surface fibrillation and internal collagen damage were graded by four observers, based on histology and staining of collagen damage. Results show that loading magnitude affects the degree of collagen damage, while loading rate dominates the location of network damage: low rates predominantly damage superficial collagen, while at high rates, internal collagen damage occurs. The proposed explanation for the rate-dependent location is that internal fluid flows govern the time-dependent internal tissue deformation and therewith the location of overstained and damaged areas. This supports the hypothesis that collagen damage development is influenced by the time-dependent material behaviour of cartilage.
机译:关节软骨中的胶原蛋白损伤被认为几乎是不可逆的,并且可能是软骨退化的早期迹象。超负荷后可能会发生表面原纤维形成和内部胶原蛋白损伤。这项研究假设损伤在这些不同的位置发展,因为过度的应力分布会随时间的软骨特性而随负荷率而变化。目的是探究胶原蛋白损伤是优先发生在表面还是内部,具体取决于超载的程度和速度。用2毫米直径的压头以5、60和120毫米/分钟的速度将牛骨软骨塞压缩至15、25、35和45 N.基于组织学和胶原蛋白损伤的染色,由四名观察者对表面原纤维形成和内部胶原蛋白损伤进行分级。结果表明,上样量会影响胶原蛋白的损伤程度,而上样率则主要影响网络损伤的位置:低下样率主要损伤表层胶原蛋白,而上样率高时会发生内部胶原蛋白损伤。对速率相关位置的建议解释是,内部流体流控制时间相关的内部组织变形,以及过度染色和受损区域的位置。这支持了胶原损伤发展受软骨随时间变化的物质行为影响的假设。

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