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用于定量肺超声的实时多频超声成像——初步临床结果

Real-time multi-frequency ultrasound imaging for quantitative lung ultrasound - first clinical results.

作者信息

Demi Libertario, Demi Marcello, Prediletto Renato, Soldati Gino

机构信息

Department of Information Engineering and Computer Science, University of Trento, Via Sommarive 9, 38123, Trento, Italy.

Department of Medical Image Processing, Fondazione Toscana Gabriele Monasterio, Via Trieste 41, 56124, Pisa, Italy.

出版信息

J Acoust Soc Am. 2020 Aug;148(2):998. doi: 10.1121/10.0001723.

Abstract

Lung ultrasound imaging is a fast-evolving field of application for ultrasound technologies. However, most diagnoses are currently performed with imaging protocols that assume a quasi-homogeneous speed of sound in the volume of interest. When applied to the lung, due to the presence of air, this assumption is unrealistic. Consequently, diagnoses are often based on imaging artifacts and thus qualitative and subjective. In this paper, we present an image formation protocol that is capable of capturing the frequency dependence of well-known artifacts (B-lines) and visualizing it in real time, ultimately providing a quantitative assessment of the signals received from the lung. Previous in vitro studies have shown the potential of B-lines native-frequency for the characterization of bubbly medium, but this paper presents the first results on clinical data. The image formation process has been designed to work on lung tissue, and ultrasound images generated with four orthogonal bands centered at 3, 4, 5 and 6 MHz can be acquired and displayed in real time. Results show that B-lines can be characterized on the basis of their native frequency in vivo and open the way toward real-time quantitative lung ultrasound imaging.

摘要

肺部超声成像技术是超声技术中一个快速发展的应用领域。然而,目前大多数诊断是通过成像协议进行的,这些协议假定感兴趣区域内的声速近乎均匀。当应用于肺部时,由于空气的存在,这一假设并不现实。因此,诊断往往基于成像伪像,因而具有定性和主观性。在本文中,我们提出了一种成像协议,该协议能够捕捉著名伪像(B线)的频率依赖性并实时显示,最终对从肺部接收到的信号进行定量评估。先前的体外研究已经显示了B线固有频率在表征气泡介质方面的潜力,但本文展示了关于临床数据的首个结果。成像过程设计用于肺部组织,能够实时采集并显示以3、4、5和6 MHz为中心的四个正交频段生成的超声图像。结果表明,B线可以在体内根据其固有频率进行表征,为实时定量肺部超声成像开辟了道路。

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