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Effects of freezing on the mechanical properties of articular cartilage.

机译:冷冻对关节软骨力学性能的影响。

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Preventing cartilage injury is important in minimizing the long term debilitating effects of osteoarthritis. Accurate subfracture injury prediction must take into account the possible effects that freeze thaw cycles may have on the mechanical properties of cartilage tissue. This paper addresses this concern with matched pair testing of various low temperature storage techniques against fresh control groups. Ten matched pairs of bovine knees were used for testing, five pairs for a -20 degrees C slow freeze cycle and five pairs for a -80 degres C flash freeze cycle. Controlled mechanical indention tests were performed on the bovine articular cartilage-on-bone specimens to compare stiffness, peak stress, and loading energy of the cartilage. Findings showed that a slow freeze cycle or flash freeze cycle caused cartilage stiffness to decrease by 37% and 31% respectively, which was statistically significant in both cases (p< or =0.01). Compressive stress at this strain was also lowered by 31% with a slow freezing process (p=0.03). A similar trend was observed with compressive stress in the flash freeze specimens, although the 37% decrease was not found to be statistically significant (p=0.08). These results may be indicative of a weakened extracellular matrix structure caused by the freeze-thaw process. It is still unclear whether these changes in mechanical properties will result in a change in injury susceptibility for articular cartilage.
机译:预防软骨损伤对于最大程度地减少骨关节炎的长期虚弱影响至关重要。准确的亚断裂损伤预测必须考虑到冻融循环可能对软骨组织的机械性能产生的影响。本文通过针对新鲜对照组的各种低温存储技术的配对测试来解决这一问题。十对匹配的牛膝用于测试,五对用于-20摄氏度的慢速冷冻循环,五对用于-80度的C闪速冷冻循环。在牛关节软骨骨样品上进行了受控的机械压痕测试,以比较刚度,峰值应力和软骨的负荷能量。研究结果表明,缓慢的冷冻周期或快速冷冻周期导致软骨硬度分别降低37%和31%,这在两种情况下均具有统计学意义(p <或= 0.01)。通过缓慢的冷冻过程,该应变下的压应力也降低了31%(p = 0.03)。尽管没有发现37%的下降在统计学上具有统计学意义(p = 0.08),但在速冻样品中也观察到了类似的趋势。这些结果可能表明由冻融过程引起的细胞外基质结构减弱。尚不清楚机械性能的这些变化是否会导致关节软骨损伤敏感性的变化。

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