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基于快速光声显微镜的精确球囊导管跟踪与可视化的可行性研究。

Feasibility Study of Precise Balloon Catheter Tracking and Visualization with Fast Photoacoustic Microscopy.

机构信息

Department of Nuclear Medicine, Chonnam National University Medical School & hospital, 42 Jebong-ro, Dong-gu, Gwangju 61469, Korea.

Department of Artificial Intelligence Convergence, Chonnam National University, 77 Yongbong-ro, Buk-gu, Gwangju 61186, Korea.

出版信息

Sensors (Basel). 2020 Sep 29;20(19):5585. doi: 10.3390/s20195585.

Abstract

Correct guiding of the catheter is a critical issue in almost all balloon catheter applications, including arterial stenosis expansion, coronary arterial diseases, and gastrointestinal tracking. To achieve safe and precise guiding of the balloon catheter, a novel imaging method with high-resolution, sufficient depth of penetration, and real-time display is required. Here, we present a new balloon catheter guiding method using fast photoacoustic microscopy (PAM) technique for precise balloon catheter tracking and visualization as a feasibility study. We implemented ex vivo and in vivo experiments with three different medium conditions of balloon catheter: no air, air, and water. Acquired cross-sectional, maximum amplitude projection (MAP), and volumetric 3D PAM images demonstrated its capability as a new imaging guiding tool for balloon catheter tracking and visualization.

摘要

在几乎所有的球囊导管应用中,包括动脉狭窄扩张、冠状动脉疾病和胃肠道跟踪,正确引导导管是一个关键问题。为了实现安全和精确的球囊导管引导,需要一种具有高分辨率、足够穿透深度和实时显示的新型成像方法。在这里,我们提出了一种使用快速光声显微镜(PAM)技术的新型球囊导管引导方法,用于精确的球囊导管跟踪和可视化,作为一项可行性研究。我们在三种不同的球囊导管介质条件下进行了离体和体内实验:无空气、空气和水。获得的横截面、最大振幅投影(MAP)和体积 3D PAM 图像证明了它作为一种新的成像引导工具,用于球囊导管跟踪和可视化的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9708/7582572/acd893acadf8/sensors-20-05585-g001.jpg

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