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Development of a Photoacoustic, Ultrasound and Fluorescence Imaging Catheter for the Study of Atherosclerotic Plaque

机译:用于研究动脉粥样硬化斑块的光声,超声和荧光成像导管的开发

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摘要

Atherosclerotic cardiovascular diseases are a major cause of death in industrialized countries. Molecular imaging modalities are increasingly recognized to be a promising avenue towards improved diagnosis and for the evaluation of new drug therapies. In this work, we present an acquisition system and associated catheter enabling simultaneous photoacoustic, ultrasound and fluorescence imaging of arteries designed for in vivo imaging. The catheter performance is evaluated in tissue-mimicking phantoms. Simultaneous imaging with three modalities is demonstrated at frame rates of 30 images per second for ultrasound and fluorescence and 1 image per 13 seconds for photoacoustic. Acquired radio-frequency ultrasound data could be processed to obtain radial strain elastograms. With motorized pullback, 3D imaging of phantoms was performed using the three modalities.
机译:动脉粥样硬化性心血管疾病是工业化国家的主要死亡原因。分子成像方式被越来越多地认为是改善诊断和评估新药疗法的有前途的途径。在这项工作中,我们介绍了一种采集系统和相关的导管,可同时对设计用于体内成像的动脉进行光声,超声和荧光成像。在模仿组织的体模中评估导管性能。在超声和荧光的每秒30幅图像和光声每13秒1幅图像的帧频下,展示了三种模式的同时成像。可以对获取的射频超声数据进行处理以获得径向应变弹性图。借助机动回拉,使用这三种方式对人体模型进行了3D成像。

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