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Real-time intravascular photoacoustic-ultrasound imaging of lipid-laden plaque in human coronary artery at 16 frames per second

机译:每秒16帧的实时冠状动脉内脂质脂质斑块的血管内光声超声成像

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摘要

Intravascular photoacoustic-ultrasound (IVPA-US) imaging is an emerging hybrid modality for the detection of lipid-laden plaques, as it provides simultaneous morphological and lipid-specific chemical information of an artery wall. Real-time imaging and display at video-rate speed are critical for clinical utility of the IVPA-US imaging technology. Here, we demonstrate a portable IVPA-US system capable of imaging at up to 25 frames per second in real-time display mode. This unprecedented imaging speed was achieved by concurrent innovations in excitation laser source, rotary joint assembly, 1 mm IVPA-US catheter size, differentiated A-line strategy, and real-time image processing and display algorithms. Spatial resolution, chemical specificity, and capability for imaging highly dynamic objects were evaluated by phantoms to characterize system performance. An imaging speed of 16 frames per second was determined to be adequate to suppress motion artifacts from cardiac pulsation for in vivo applications. The translational capability of this system for the detection of lipid-laden plaques was validated by ex vivo imaging of an atherosclerotic human coronary artery at 16 frames per second, which showed strong correlation to gold-standard histopathology. Thus, this high-speed IVPA-US imaging system presents significant advances in the translational intravascular and other endoscopic applications.
机译:血管内光声超声(IVPA-US)成像是一种新兴的混合模式,可用于检测富含脂质的斑块,因为它可同时提供动脉壁的形态学和脂质特异性化学信息。实时成像和以视频速率显示对于IVPA-US成像技术的临床实用性至关重要。在这里,我们演示了一种便携式IVPA-US系统,该系统能够在实时显示模式下以每秒25帧的速度进行成像。激发激光源,旋转接头组件,1μmmIVPA-US导管尺寸,差异化的A线策略以及实时图像处理和显示算法的并发创新实现了前所未有的成像速度。通过幻像对空间分辨率,化学特异性和对高动态对象成像的能力进行了评估,以表征系统性能。确定每秒16帧的成像速度足以抑制体内应用中来自心脏搏动的运动伪影。通过以每秒16帧的速度对动脉粥样硬化的人冠状动脉进行离体成像,验证了该系统检测脂质负载斑块的翻译能力,这与金标准组织病理学密切相关。因此,这种高速IVPA-US成像系统在平移血管内和其他内窥镜应用中取得了重大进展。

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