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基于声辐射力的弹性成像方法。

Acoustic radiation force-based elasticity imaging methods.

机构信息

Department of Biomedical Engineering , Duke University , Durham, NC 27708 , USA.

出版信息

Interface Focus. 2011 Aug 6;1(4):553-64. doi: 10.1098/rsfs.2011.0023. Epub 2011 Jun 8.

Abstract

Conventional diagnostic ultrasound images portray differences in the acoustic properties of soft tissues, whereas ultrasound-based elasticity images portray differences in the elastic properties of soft tissues (i.e. stiffness, viscosity). The benefit of elasticity imaging lies in the fact that many soft tissues can share similar ultrasonic echogenicities, but may have different mechanical properties that can be used to clearly visualize normal anatomy and delineate pathological lesions. Acoustic radiation force-based elasticity imaging methods use acoustic radiation force to transiently deform soft tissues, and the dynamic displacement response of those tissues is measured ultrasonically and is used to estimate the tissue's mechanical properties. Both qualitative images and quantitative elasticity metrics can be reconstructed from these measured data, providing complimentary information to both diagnose and longitudinally monitor disease progression. Recently, acoustic radiation force-based elasticity imaging techniques have moved from the laboratory to the clinical setting, where clinicians are beginning to characterize tissue stiffness as a diagnostic metric, and commercial implementations of radiation force-based ultrasonic elasticity imaging are beginning to appear on the commercial market. This article provides an overview of acoustic radiation force-based elasticity imaging, including a review of the relevant soft tissue material properties, a review of radiation force-based methods that have been proposed for elasticity imaging, and a discussion of current research and commercial realizations of radiation force based-elasticity imaging technologies.

摘要

传统的超声诊断图像描绘了软组织的声学特性差异,而基于超声的弹性图像描绘了软组织的弹性特性差异(即硬度、粘度)。弹性成象的优点在于许多软组织可能具有相似的超声回声特性,但可能具有不同的机械特性,这些特性可用于清晰地显示正常解剖结构并描绘病理病变。基于声辐射力的弹性成像方法使用声辐射力来瞬时变形软组织,并且通过超声测量这些组织的动态位移响应,并用于估计组织的机械特性。可以从这些测量数据中重建定性图像和定量弹性指标,为诊断和纵向监测疾病进展提供补充信息。最近,基于声辐射力的弹性成像技术已经从实验室转移到临床环境,临床医生开始将组织硬度作为诊断指标进行描述,并且基于辐射力的超声弹性成像的商业实现开始出现在商业市场上。本文概述了基于声辐射力的弹性成像,包括对相关软组织材料特性的综述、对已提出的用于弹性成像的基于辐射力的方法的综述,以及对基于辐射力的弹性成像技术的当前研究和商业实现的讨论。

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