首页> 外文期刊>Arthritis and Rheumatism >Difference in subchondral cancellous bone between postmenopausal women with hip osteoarthritis and osteoporotic fracture: Implication for fatigue microdamage, bone microarchitecture, and biomechanical properties
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Difference in subchondral cancellous bone between postmenopausal women with hip osteoarthritis and osteoporotic fracture: Implication for fatigue microdamage, bone microarchitecture, and biomechanical properties

机译:绝经后女性髋骨关节炎和骨质疏松性骨折的软骨下松质骨的差异:对疲劳微损伤,骨微结构和生物力学特性的影响

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Objective Osteoarthritis (OA) and osteoporosis (OP) of the hip rarely occur in the same patient. The purpose of this study was to determine whether this difference might be attributable to the different quantity and quality of subchondral cancellous bone in the two conditions. Methods Subchondral cancellous bone from the femoral head was obtained at the time of hip arthroplasty from 60 postmenopausal women, 30 with OA and 30 with OP. In each group, 10 specimens were subjected to compressive fatigue loading and 20 were left nonloaded. Specimens were examined by compressive mechanical testing, micro-computed tomography scanning, fluorescence microscopy, and nanoindentation techniques. Results Both the ultimate stress and the elastic modulus of cancellous bone from OA patients were significantly higher than those of cancellous bone from OP patients (P < 0.05). Compared to cancellous bone from OP patients, the bone volume fraction and trabecular thickness were significantly increased, but bone matrix mineralization was significantly decreased, in cancellous bone from OA patients (P < 0.05 for each comparison). The microcrack density was significantly higher in OP cancellous bone than in OA cancellous bone (P < 0.001), irrespective of fatigue loading. In addition, fatigue loading resulted in a significant increase in microcrack density in both OA and OP cancellous bone (P < 0.001). There was no significant difference in nanoindentation elastic modulus and hardness between cancellous bone from OA and OP patients, as well as between bones with and without fatigue loading. Conclusion The difference in mechanical properties between OA and OP cancellous bone is attributed to different bone mass and bone structure. OP cancellous bone is susceptible to fatigue damage due to insufficient structure. However, increased bone volume and plate-like structure provide OA cancellous bone a superior capacity to resist fatigue damage.
机译:目的同一患者很少发生髋骨关节炎(OA)和骨质疏松症(OP)。这项研究的目的是确定这种差异是否可以归因于两种情况下软骨下松质骨的数量和质量的不同。方法60例绝经后妇女,30例OA和30例OP的患者在进行髋关节置换术时获得了股骨头的软骨下松质骨。在每组中,对10个试样进行压缩疲劳加载,而20个则不加载。通过压缩机械测试,显微计算机断层扫描,荧光显微镜和纳米压痕技术检查了样品。结果OA患者的松质骨的极限应力和弹性模量均显着高于OP患者的松质骨(P <0.05)。与OP患者的松质骨相比,OA患者的松质骨的骨体积分数和小梁厚度显着增加,但骨基质矿化显着降低(每次比较P <0.05)。与疲劳负荷无关,OP松质骨的微裂纹密度显着高于OA松质骨(P <0.001)。此外,疲劳负荷导致OA和OP松质骨的微裂纹密度显着增加(P <0.001)。 OA和OP患者的松质骨之间以及有和没有疲劳负荷的骨骼之间的纳米压痕弹性模量和硬度均无显着差异。结论OA和OP松质骨的力学性能差异是由于不同的骨量和骨结构。 OP松质骨由于结构不足而容易受到疲劳损伤。但是,增加的骨体积和板状结构为OA松质骨提供了抵抗疲劳损伤的出色能力。

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