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基于共振超声光谱法的皮质骨弹性张量测量

Measurement of Cortical Bone Elasticity Tensor with Resonant Ultrasound Spectroscopy.

机构信息

Laboratoire Ondes et Milieux Complexes (LOMC), UMR CNRS 6294, Université Le Havre Normandie, Le Havre, France.

School of Information Science and Technology, ShanghaiTech University, Shanghai, China.

出版信息

Adv Exp Med Biol. 2022;1364:253-277. doi: 10.1007/978-3-030-91979-5_12.

Abstract

Resonant Ultrasound Spectroscopy estimates the stiffness coefficients of a material from the free resonant frequencies of a single specimen. It is particularly suitable for complete stiffness characterization of anisotropic materials available only as small samples (typically a few mm), and it does not suffer from some limitations associated to quasi-static mechanical test and ultrasound wave velocity measurements. RUS has been used for decades on geological samples and single crystals, but was until recently not applied to mineralized tissues such as bone. The reason is the significant mechanical damping presents in these materials, which causes the resonant peaks to overlap and prevent a direct measurement of the resonant frequencies. This chapter describes the use of RUS for the elastic characterization of mineralized tissues, cortical bone in particular. All steps are described, from sample preparation and measurement setup to signal processing and data analysis, including the developments and adaptions necessary to overcome the difficulties linked to damping. Viscoelastic characterization, from the width of the resonant peaks, is also presented. Mostly technical aspects are developed in this chapter, while the data obtained from RUS on several collections of mineralized tissues specimens are presented and discussed in Chap. 13.

摘要

共振超声光谱法通过单个样本的自由共振频率来估计材料的弹性系数。它特别适用于仅作为小样本(通常为数毫米)提供的各向异性材料的完整刚度特性描述,并且不会受到与准静态机械测试和超声波速度测量相关的一些限制。几十年来,RUS 一直被用于地质样本和单晶,但直到最近才被应用于矿化组织,如骨骼。原因是这些材料中存在显著的机械阻尼,这导致共振峰重叠并阻止了对共振频率的直接测量。本章描述了共振超声光谱法在矿化组织弹性特性中的应用,特别是皮质骨。描述了从样品制备和测量设置到信号处理和数据分析的所有步骤,包括克服与阻尼相关的困难所需的开发和适应。还介绍了从共振峰的宽度进行的粘弹性特性描述。本章主要阐述了技术方面,而第 13 章则介绍和讨论了从多个矿化组织样本的 RUS 获得的数据。

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