使用双频血管内光声/超声导管对动脉粥样硬化斑块进行高灵敏度的脂质检测和定位。

Translational biophotonics Pub Date : 2020-08-01 Epub Date: 2020-05-12 DOI:10.1002/tbio.202000004
Yingchun Cao, Mouhamad Alloosh, Michael Sturek, Ji-Xin Cheng
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引用次数: 10

摘要

血管内光声/超声(IVPA/US)是一种新兴的混合成像模式,它提供特定的脂质检测和定位,同时保持共同配准的动脉形态,用于诊断心血管疾病中的易损斑块。然而,由于脂质吸收的对比度相对较低以及光声和超声信号的检测带冲突,当前基于单元件换能器的IVPA/US方法在脂质检测方面表现出折衷的性能。在此,我们提出了一种双频IVPA/US导管,用于脂质的高灵敏度检测和精确定位。低频换能器提供增强的光声灵敏度,而高频换能器保持超声成像的最先进的空间分辨率。IVPA/US成像能力的增强使得能够对患有冠状动脉粥样硬化的猪的脂质分布进行多尺度分析。双频IVPA/US导管直径为1毫米,具有灵活性,可轻松适应当前的导管插入术程序,是临床诊断易损斑块的重要一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Highly sensitive lipid detection and localization in atherosclerotic plaque with a dual-frequency intravascular photoacoustic/ultrasound catheter.

Intravascular photoacoustic/ultrasound (IVPA/US) is an emerging hybrid imaging modality that provides specific lipid detection and localization, while maintaining co-registered artery morphology, for diagnosis of vulnerable plaque in cardiovascular disease. However, current IVPA/US approaches based on a single-element transducer exhibit compromised performance for lipid detection due to the relatively low contrast of lipid absorption and conflicting detection bands for photoacoustic and ultrasound signals. Here, we present a dual-frequency IVPA/US catheter for highly sensitive detection and precision localization of lipids. The low frequency transducer provides enhanced photoacoustic sensitivity, while the high frequency transducer maintains state-of-the-art spatial resolution for ultrasound imaging. The boosted capability of IVPA/US imaging enables a multi-scale analysis of lipid distribution in swine with coronary atherosclerosis. The dual-frequency IVPA/US catheter has a diameter of 1 mm and flexibility to easily adapt to current catheterization procedures and is a significant step toward clinical diagnosis of vulnerable plaque.

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