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应用微布里渊散射技术在 GHz 范围内对骨组织进行特性分析。

Application of a micro-Brillouin scattering technique to characterize bone in the GHz range.

机构信息

Laboratory of Ultrasonic Electronics, Doshisha University, 1-3 Tatara-Miyakodani, Kyotanabe, Kyoto 610-0321, Japan.

Laboratory of Ultrasonic Electronics, Doshisha University, 1-3 Tatara-Miyakodani, Kyotanabe, Kyoto 610-0321, Japan.

出版信息

Ultrasonics. 2014 Jul;54(5):1155-61. doi: 10.1016/j.ultras.2013.09.016. Epub 2013 Sep 29.

Abstract

The evaluation of elastic properties of bone matrix has been investigated using several techniques such as nanoindentation and scanning acoustic microscopy (SAM). These techniques make use of good spatial resolution, which can prevent effects due to microstructures at the level of several hundreds of microns. In this paper, micro-Brillouin scattering (μ-BR) is introduced as another possible technique to characterize the elastic properties of bone. This technique is well known as a non-contact and non-destructive method to evaluate viscoelastic properties of transparent materials in the GHz range. Using thin, translucent bone specimens with thicknesses of around 100 μm, and the reflection induced optical geometry, ultrasonic wave velocities in the GHz range were obtained. Because this technique optically measures thermal phonons in the specimen, we can easily measure in-plane anisotropy of wave velocities by rotating the specimen. In a single trabecula, the site matched data between SAM and μ-BR showed good correlation, revealing the applicability of this technique to characterize material properties of bone. Some recent results on the anisotropy in a trabecula and the elasticity evaluation of newly and matured bones are also introduced.

摘要

已经使用几种技术,如纳米压痕和扫描声学显微镜 (SAM),研究了骨基质弹性特性的评估。这些技术利用了良好的空间分辨率,可以防止由于几百微米级别的微结构引起的影响。在本文中,微布里渊散射 (μ-BR) 被引入作为另一种可能的技术来表征骨的弹性特性。该技术是一种众所周知的非接触式和无损方法,可用于评估 GHz 范围内透明材料的粘弹性特性。使用厚度约为 100 μm 的薄的、半透明的骨标本,以及反射诱导的光学几何形状,获得了 GHz 范围内的超声波速度。由于该技术在标本中光学测量热声子,我们可以通过旋转标本轻松测量波速的面内各向异性。在单个小梁中,SAM 和 μ-BR 之间的匹配数据显示出良好的相关性,表明该技术适用于表征骨的材料特性。还介绍了小梁内各向异性和新成熟骨的弹性评估的一些最新结果。

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