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利用复合定量超声层析成像技术对人体股骨进行体外定量成像的研究进展。

Progress towards in vitro quantitative imaging of human femur using compound quantitative ultrasonic tomography.

作者信息

Lasaygues Philippe, Ouedraogo Edgard, Lefebvre Jean-Pierre, Gindre Marcel, Talmant Marilyne, Laugier Pascal

机构信息

Laboratoire de Mécanique et d'Acoustique UPR CNRS 7051, 31 chemin Joseph Aiguier, 13402 Marseille Cedex 20, France.

出版信息

Phys Med Biol. 2005 Jun 7;50(11):2633-49. doi: 10.1088/0031-9155/50/11/013. Epub 2005 May 18.

Abstract

The objective of this study is to make cross-sectional ultrasonic quantitative tomography of the diaphysis of long bones. Ultrasonic propagation in bones is affected by the severe mismatch between the acoustic properties of this biological solid and those of the surrounding soft medium, namely, the soft tissues in vivo or water in vitro. Bone imaging is then a nonlinear inverse-scattering problem. In this paper, we showed that in vitro quantitative images of sound velocities in a human femur cross section could be reconstructed by combining ultrasonic reflection tomography (URT), which provides images of the macroscopic structure of the bone, and ultrasonic transmission tomography (UTT), which provides quantitative images of the sound velocity. For the shape, we developed an image-processing tool to extract the external and internal boundaries and cortical thickness measurements. For velocity mapping, we used a wavelet analysis tool adapted to ultrasound, which allowed us to detect precisely the time of flight from the transmitted signals. A brief review of the ultrasonic tomography that we developed using correction algorithms of the wavepaths and compensation procedures are presented. Also shown are the first results of our analyses on models and specimens of long bone using our new iterative quantitative protocol.

摘要

本研究的目的是对长骨干进行横断面超声定量断层成像。骨骼中的超声传播受到这种生物固体与周围软介质(即体内软组织或体外水)声学特性严重不匹配的影响。因此,骨成像成为一个非线性逆散射问题。在本文中,我们表明,通过结合超声反射断层成像(URT,可提供骨骼宏观结构图像)和超声透射断层成像(UTT,可提供声速定量图像),能够重建人体股骨横断面的体外声速定量图像。对于形状,我们开发了一种图像处理工具来提取外部和内部边界以及测量皮质厚度。对于速度映射,我们使用了一种适用于超声的小波分析工具,它使我们能够精确检测来自传输信号的飞行时间。本文简要回顾了我们使用波路径校正算法和补偿程序开发的超声断层成像。还展示了我们使用新的迭代定量方案对长骨模型和标本进行分析的初步结果。

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