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使用多焦点闪烁伪像成像对乳腺微钙化进行实时超声检测

Real-Time Ultrasound Detection of Breast Microcalcifications Using Multifocus Twinkling Artifact Imaging.

作者信息

Kang Jinbum, Han Kanghee, Song Ilseob, Kim Kang-Sik, Jang Won Seuk, Kim Min Jung, Yoo Yangmo

出版信息

IEEE Trans Med Imaging. 2022 May;41(5):1300-1308. doi: 10.1109/TMI.2021.3136901. Epub 2022 May 2.

Abstract

Detecting microcalcifications (MCs) in real time is important in the guidance of many breast biopsies. Due to its capability in visualizing biopsy needles without radiation hazards, ultrasound imaging is preferred over X-ray mammography, but it suffers from low sensitivity in detecting MCs. Here, we present a new nonionizing method based on real-time multifocus twinkling artifact (MF-TA) imaging for reliably detecting MCs. Our approach exploits time-varying TAs arising from acoustic random scattering on MCs with rough or irregular surfaces. To obtain the increased intensity of the TAs from MCs, in MF-TA, acoustic transmit parameters, such as the transmit frequency, the number of focuses and f-number, were optimized by investigating acoustical characteristics of MCs. A real-time MF-TA imaging sequence was developed and implemented on a programmable ultrasound research system, and it was controlled with a graphical user interface during real-time scanning. From an in-house 3D phantom and ex vivo breast specimen studies, the MF-TA method showed outstanding visibility and high-sensitivity detection for MCs regardless of their distribution or the background tissue. These results demonstrated that this nonionizing, noninvasive imaging technique has the potential to be one of effective image-guidance methods for breast biopsy procedures.

摘要

在许多乳腺活检的引导过程中,实时检测微钙化(MCs)非常重要。由于超声成像能够在无辐射危害的情况下可视化活检针,因此相较于X线乳腺摄影,它更受青睐,但在检测MCs方面其灵敏度较低。在此,我们提出一种基于实时多焦点闪烁伪像(MF-TA)成像的新型非电离方法,用于可靠地检测MCs。我们的方法利用了由表面粗糙或不规则的MCs上的声学随机散射产生的随时间变化的闪烁伪像。为了提高来自MCs的闪烁伪像的强度,在MF-TA中,通过研究MCs的声学特性,对诸如发射频率、焦点数量和f数等声学发射参数进行了优化。在可编程超声研究系统上开发并实现了实时MF-TA成像序列,并且在实时扫描过程中通过图形用户界面进行控制。从内部3D模型和离体乳腺标本研究中可以看出,无论MCs的分布情况或背景组织如何,MF-TA方法对MCs均表现出出色的可视性和高灵敏度检测能力。这些结果表明,这种非电离、非侵入性成像技术有潜力成为乳腺活检程序的有效图像引导方法之一。

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