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腹主动脉的双基地双孔径超声成像与弹性成像

bistatic dual-aperture ultrasound imaging and elastography of the abdominal aorta.

作者信息

van Hal Vera H J, de Hoop Hein, van Sambeek Marc R H M, Schwab Hans-Martin, Lopata Richard G P

机构信息

Photoacoustics and Ultrasound Laboratory Eindhoven (PULS/e), Department of Biomedical Engineering, Eindhoven University of Technology, Eindhoven, Netherlands.

Department of Vascular Surgery, Catharina Hospital, Eindhoven, Netherlands.

出版信息

Front Physiol. 2024 Mar 28;15:1320456. doi: 10.3389/fphys.2024.1320456. eCollection 2024.

Abstract

In this paper we introduce multi-aperture ultrasound imaging and elastography of the abdominal aorta. Monitoring of the geometry and growth of abdominal aortic aneurysms (AAA) is paramount for risk stratification and intervention planning. However, such an assessment is limited by the lateral lumen-wall contrast and resolution of conventional ultrasound. Here, an dual-aperture bistatic imaging approach is shown to improve abdominal ultrasound and strain imaging quality significantly. By scanning the aorta from different directions, a larger part of the vessel circumference can be visualized. In this first-in-man volunteer study, the performance of multi-aperture ultrasound imaging and elastography of the abdominal aortic wall was assessed in 20 healthy volunteers. Dual-probe acquisition was performed in which two curved array transducers were aligned in the same imaging plane. The transducers alternately transmit and both probes receive simultaneously on each transmit event, which allows for the reconstruction of four ultrasound signals. Automatic probe localization was achieved by optimizing the coherence of the trans-probe data, using a gradient descent algorithm. Speckle-tracking was performed on the four individual bistatic signals, after which the respective axial displacements were compounded and strains were calculated. Using bistatic multi-aperture ultrasound imaging, the image quality of the ultrasound images, , the angular coverage of the wall, was improved which enables accurate estimation of local motion dynamics and strain in the abdominal aortic wall. The motion tracking error was reduced from 1.3 mm ± 0.63 mm to 0.16 mm ± 0.076 mm, which increased the circumferential elastographic signal-to-noise ratio (SNRe) by 12.3 dB ± 8.3 dB on average, revealing more accurate and homogeneous strain estimates compared to single-perspective ultrasound. Multi-aperture ultrasound imaging and elastography is feasible and can provide the clinician with vital information about the anatomical and mechanical state of AAAs in the future.

摘要

在本文中,我们介绍了腹主动脉的多孔径超声成像和弹性成像。监测腹主动脉瘤(AAA)的几何形状和生长对于风险分层和干预计划至关重要。然而,这种评估受到传统超声横向管腔壁对比度和分辨率的限制。在此,一种双孔径双基地成像方法被证明可显著提高腹部超声和应变成像质量。通过从不同方向扫描主动脉,可以可视化血管圆周的更大一部分。在这项首次在人体志愿者中进行的研究中,对20名健康志愿者的腹主动脉壁多孔径超声成像和弹性成像性能进行了评估。进行了双探头采集,其中两个弯曲阵列换能器在同一成像平面上对齐。换能器交替发射,并且两个探头在每次发射事件时同时接收,这允许重建四个超声信号。通过使用梯度下降算法优化跨探头数据的相干性来实现自动探头定位。在四个单独的双基地信号上进行斑点跟踪,之后将各自的轴向位移进行合成并计算应变。使用双基地多孔径超声成像,超声图像的图像质量,即壁的角度覆盖范围得到了改善,这使得能够准确估计腹主动脉壁中的局部运动动力学和应变。运动跟踪误差从1.3毫米±0.63毫米降低到0.16毫米±0.076毫米,这使得圆周弹性成像信噪比(SNRe)平均提高了12.3分贝±8.3分贝,与单视角超声相比,揭示了更准确和均匀的应变估计。多孔径超声成像和弹性成像是可行的,并且未来可为临床医生提供有关AAA解剖和力学状态的重要信息。

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