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An introduction to measurements of human cortical bone elasticity using Resonant Ultrasound Spectroscopy

机译:超声共振法测量人体皮质骨弹性的简介

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To understand the structure-function relationship of bone and to investigate bone fragility, a precise and practical way to measure cortical bone elasticity is important. Resonant Ultrasound Spectroscopy (RUS) has shown its accuracy and convenience in fully characterizing the stiffness coefficients of anisotropic solid materials. However, it was long believed that the method is not applicable to bone, a highly damping material. This paper reviews the basic concepts of RUS measurement and the recent progress of adapting this technique to the measurement of the elasticity tensor of highly damping materials. Meanwhile, a successful implementation of RUS with latest progress to measure the elasticity tensor of a collection of human tibia cortical bone specimens was demonstrated.
机译:为了了解骨骼的结构-功能关系并研究骨骼的脆性,一种精确而实用的测量皮质骨弹性的方法很重要。共振超声光谱(RUS)在完全表征各向异性固体材料的刚度系数方面已显示出其准确性和便利性。但是,长期以来人们认为该方法不适用于高阻尼材料的骨头。本文回顾了RUS测量的基本概念,以及将该技术应用于高阻尼材料的弹性张量测量的最新进展。同时,展示了RUS的成功实施以及最新的测量人类胫骨皮质骨标本集合的弹性张量的最新进展。

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