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基于声辐射力的超声弹性成像技术在生物医学中的应用。

Acoustic Radiation Force Based Ultrasound Elasticity Imaging for Biomedical Applications.

机构信息

Department of Biomedical Engineering, School of Instrument Science and Opto-electronics Engineering, Hefei University of Technology, Hefei 230009, China.

Institute of Biomedical Technologies, Auckland University of Technology, Auckland 1142, New Zealand.

出版信息

Sensors (Basel). 2018 Jul 12;18(7):2252. doi: 10.3390/s18072252.

Abstract

Pathological changes in biological tissue are related to the changes in mechanical properties of biological tissue. Conventional medical screening tools such as ultrasound, magnetic resonance imaging or computed tomography have failed to produce the elastic properties of biological tissues directly. Ultrasound elasticity imaging (UEI) has been proposed as a promising imaging tool to map the elastic parameters of soft tissues for the clinical diagnosis of various diseases include prostate, liver, breast, and thyroid gland. Existing UEI-based approaches can be classified into three groups: internal physiologic excitation, external excitation, and acoustic radiation force (ARF) excitation methods. Among these methods, ARF has become one of the most popular techniques for the clinical diagnosis and treatment of disease. This paper provides comprehensive information on the recently developed ARF-based UEI techniques and instruments for biomedical applications. The mechanical properties of soft tissue, ARF and displacement estimation methods, working principle and implementation instruments for each ARF-based UEI method are discussed.

摘要

生物组织的病理变化与生物组织力学性能的变化有关。传统的医学筛查工具,如超声、磁共振成像或计算机断层扫描,都无法直接产生生物组织的弹性特性。超声弹性成象(UEI)已被提出作为一种有前途的成像工具,用于绘制软组织的弹性参数,用于临床诊断各种疾病,包括前列腺、肝脏、乳房和甲状腺。现有的基于 UEI 的方法可以分为三组:内部生理激励、外部激励和声辐射力(ARF)激励方法。在这些方法中,ARF 已成为疾病临床诊断和治疗最受欢迎的技术之一。本文提供了有关最近开发的用于生物医学应用的基于 ARF 的 UEI 技术和仪器的全面信息。讨论了软组织的力学特性、ARF 和位移估计方法、每种基于 ARF 的 UEI 方法的工作原理和实现仪器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d55/6069000/2078e37209bb/sensors-18-02252-g001.jpg

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