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Microdamage Evaluation in Human Trabecular Bone Using Non-Linear Ultrasound

机译:使用非线性超声的人小梁骨中的微摩擦评估

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The primary aim of this work is to investigate the potential of nonlinear ultrasound for micro-damage detection in human bone. Micro-damage evaluation in human bone is important because it characterizes fracture risk. Experiments were carried out in human femoral specimens with marrow and soft tissues removed. An ultrasound wave was modulated by using low-frequency vibrations applied directly to the bone specimens The modulation of the ultrasound appears in the form of side frequencies around the fundamental high frequency, corresponding to low frequency vibration. The specimens were subjected to progressive damage accumulation and the nonlinear modulation was measured. It was shown that the modulation amplitude increases with increasing micro-damage and can be therefore, used as a measure of damage. The obtained results indicate that, in contrast to conventionally considered hysteric non-linearity, dissipative acoustic non-linearity may also play significant role for the observed nonlinear modulation effects. The proposed technique is superior compared to Nonlinear Resonance Ultrasound Spectroscopy (NRUS) because the size and the shape of samples are not important. Furthermore, the method is noninvasive, easy to implement and most important, can be proved appropriate for in vivo bone damage characterization.
机译:这项工作的主要目的是探讨非线性超声波在人骨中进行微损伤的潜力。人骨中的微损伤评估很重要,因为它表征了骨折风险。实验在人股标本中进行了骨髓和软组织。通过使用直接施加到骨标本的低频振动调制超声波,超声波的调制出现在围绕基本高频的侧频形式,对应于低频振动。对样品进行渐进式损伤积累,并测量非线性调制。结果表明,调制幅度随着微损伤的增加而增加,因此可以用作损坏的量度。所获得的结果表明,与常规认为的氢非线性相比,耗散声学非线性也可能对观察到的非线性调制效应产生显着作用。与非线性谐振超声波谱(NRU)相比,所提出的技术是优越的,因为样品的尺寸和形状并不重要。此外,该方法是非侵入性的,易于实施,最重要的是,可以证明适合体内骨损伤表征。

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