Moilanen Petro
Department of Physics, University of Jyväskylä, Jyväskylä, Finland.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008;55(6):1277-86. doi: 10.1109/TUFFC.2008.790.
Recent progress in quantitative ultrasound (QUS) has shown increasing interest toward measuring long bones by ultrasonic guided waves. This technology is widely used in the field of nondestructive testing and evaluation of different waveguide structures. Cortical bone provides such an elastic waveguide and its ability to sustain loading and resist fractures is known to be related to its mechanical properties at different length scales. Because guided waves could yield diverse characterizations of the bone's mechanical properties at the macroscopic level, the method of guided waves has a strong potential over the standardized bone densitometry as a tool for bone assessment. Despite this, development of guided wave methods is challenging, e.g., due to interferences and multiparametric inversion problems. This paper discusses the promises and challenges related to bone characterization by ultrasonic guided waves.
定量超声(QUS)的最新进展表明,人们对通过超声导波测量长骨的兴趣日益浓厚。该技术广泛应用于不同波导结构的无损检测和评估领域。皮质骨提供了这样一种弹性波导,并且已知其承受载荷和抵抗骨折的能力与其在不同长度尺度下的力学性能相关。由于导波能够在宏观层面上对骨骼的力学性能进行多种表征,作为一种骨评估工具,导波方法相对于标准化骨密度测定法具有很大的潜力。尽管如此,导波方法的发展仍具有挑战性,例如,由于存在干扰和多参数反演问题。本文讨论了与超声导波进行骨表征相关的前景和挑战。