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Implementation of vibro-acoustography on a clinical ultrasound system

机译:超声在临床超声系统上的实现

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摘要

Vibro-acoustography is an ultrasound-based imaging modality that uses two ultrasound beams of slightly different frequencies to produce images based on the acoustic response caused by harmonic ultrasound radiation force excitation at the difference frequency between the two ultrasound frequencies. Vibro-acoustography has demonstrated feasibility and usefulness in imaging of breast and prostate tissue. However, previous studies have been performed either in controlled water tank settings or a prototype breast scanner equipped with a water tank. To make vibro-acoustography more accessible and relevant to clinical use, we report here on the implementation of vibro-acoustography on a General Electric Vivid 7 ultrasound scanner. In this paper, we will describe software and hardware modifications that were performed to make vibro- acoustography functional on this system. We will discuss aperture definition for the two ultrasound beams and beamforming using a linear-array transducer. Experimental results from beam measurements and phantom imaging studies will be shown. The implementation of vibro-acoustography provides a step toward clinical translation of this imaging modality for applications in various organs including breast, prostate, thyroid, kidney, and liver.
机译:振动声学成像是一种基于超声的成像方式,它使用频率略有不同的两个超声束,基于由两个超声频率之间的差频处的谐波超声辐射力激发而产生的声学响应来生成图像。振动声学造影已证明在乳腺和前列腺组织成像中的可行性和实用性。但是,先前的研究是在受控的水箱设置或配备水箱的原型乳房扫描仪上进行的。为了使超声声学造影更加易于使用并与临床使用相关,我们在此报告在通用电气Vivid 7超声扫描仪上进行超声声学造影的实施情况。在本文中,我们将描述为使超声声学超声在该系统上起作用而进行的软件和硬件修改。我们将讨论两个超声束的孔径定义以及使用线性阵列换能器的束形成。将显示光束测量和幻像成像研究的实验结果。振动声学造影的实施为该成像方法的临床翻译迈出了一步,可应用于包括乳房,前列腺,甲状腺,肾脏和肝脏在内的各种器官。

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