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球形矩阵阵元的双模容积光声与对比增强超声成像。

Dual-Mode Volumetric Optoacoustic and Contrast Enhanced Ultrasound Imaging With Spherical Matrix Arrays.

出版信息

IEEE Trans Med Imaging. 2022 Apr;41(4):846-856. doi: 10.1109/TMI.2021.3125398. Epub 2022 Apr 1.

Abstract

Spherical matrix arrays represent an advantageous tomographic detection geometry for non-invasive deep tissue mapping of vascular networks and oxygenation with volumetric optoacoustic tomography (VOT). Hybridization of VOT with ultrasound (US) imaging remains difficult with this configuration due to the relatively large inter-element pitch of spherical arrays. We suggest a new approach for combining VOT and US contrast-enhanced 3D imaging employing injection of clinically-approved microbubbles. Power Doppler (PD) and US localization imaging were enabled with a sparse US acquisition sequence and model-based inversion based on infimal convolution of total variation (ICTV) regularization. In vitro experiments in tissue-mimicking phantoms and in living mouse brain demonstrate the powerful capabilities of the new dual-mode imaging approach attaining 80 μm spatial resolution and a more than 10 dB signal to noise improvement with respect to a classical delay and sum beamformer. Microbubble localization and tracking allowed for flow velocity mapping up to 40 mm/s.

摘要

球形矩阵阵列代表了一种有利的层析检测几何结构,可用于非侵入性深层组织血管网络和氧合的体积光声断层扫描(VOT)成像。由于球形阵列的元件间距相对较大,这种配置下的 VOT 与超声(US)成像的结合仍然具有挑战性。我们提出了一种新的方法,将 VOT 与超声对比增强 3D 成像相结合,采用临床批准的微泡注射。通过稀疏的 US 采集序列和基于全变分(ICTV)正则化的最小卷积的基于模型的反演,实现了功率多普勒(PD)和 US 定位成像。在组织模拟体模和活体小鼠大脑中的实验表明,新的双模成像方法具有强大的功能,可实现 80μm 的空间分辨率,并相对于经典的延迟求和波束形成器提高了 10dB 以上的信噪比。微泡定位和跟踪允许对高达 40mm/s 的流速进行映射。

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