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Nonlinear ultrasound monitoring of fatigue microdamage accumulation in cortical bone

机译:皮质骨疲劳微损伤累积的非线性超声监测

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Accumulation of bone micro-damage is suspected to lead to severe impairment of mechanical properties with an increase in skeletal fragility and fracture risk. The objective of the study was to evaluate the potential of Nonlinear Resonant Ultrasound Spectroscopy (NRUS) for measuring micro-damage accumulation in cortical bone using four-point bending cycling fatigue. Sixteen human cortical bone specimens were machined as parallelepiped beams. Damage progression was controlled by measuring the linear elastic beam theory modulus (ELEBT), known to reflect microdamage accumulation. Before and between each damage step, the nonlinear ultrasonic elastic coefficient was measured by NRUS. At the end of each cycling fatigue, a subset of bone samples was measured by μCT at the European Synchrotron Radiation Facility. Results showing a progressive increase of nonlinear ultrasonic elastic coefficient along fatigue cycling suggest that NRUS measurements are sensitive to micro-damage accumulation. The results mentioned above were validated using synchrotron radiation μCT. The variation of elastic nonlinearity was found to be significantly correlated to the variation of number density of small microcracks which almost doubled in damaged regions.
机译:骨微损伤的积累被认为会导致机械性能的严重损害,并增加骨骼的脆性和骨折风险。这项研究的目的是评估非线性共振超声光谱(NRUS)用于通过四点弯曲循环疲劳测量皮质骨中微损伤累积的潜力。将十六个人类皮质骨标本加工成平行六面体梁。通过测量线性弹性梁理论模量(ELEBT)来控制损伤的进展,该模量反映了微损伤的累积。在每个损伤步骤之前和之间,通过NRUS测量非线性超声弹性系数。在每次循环疲劳结束时,在欧洲同步辐射装置上通过μCT测量了一部分骨样品。结果表明,随着疲劳循环非线性超声弹性系数的逐渐增加,表明NRUS测量对微损伤累积敏感。使用同步辐射μCT验证了上述结果。发现弹性非线性的变化与小微裂纹的数量密度的变化显着相关,在损伤区域,微裂纹的数量密度几乎翻倍。

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