我们在外周血管系统光学相干断层扫描方面的初步经验:一篇图片文章

IF 0.1 Q4 CARDIAC & CARDIOVASCULAR SYSTEMS
V. Patra, R. Dhillan, Rohit Mehra, A. Dabas, Rahul Merkhed, Vnm Chamiraju
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引用次数: 0

摘要

背景:光学相干断层扫描(OCT)多年来一直是冠状动脉内介入治疗的基础。外推这种尖端技术的好处外周血管系统仍处于萌芽阶段。这篇图片文章试图展示OCT作为外周血管可视化工具的作用。目的:探讨体外人动脉外周血管OCT血管内成像的辅助应用,鉴别富含脂质、纤维状、钙化的动脉粥样硬化斑块和其他外周血管病变。对象和方法:使用市售OCT系统进行OCT成像,该系统是一种短单轨设计,光纤成像核心集成在导管中。光学成像核心以100-180转/秒的速度旋转。以自动方式进行OCT回拉,同时冲洗等渗造影剂(Visipaque)和生理盐水。通过眼睛的OCT可视化不同病变的周围人类血管是这里作为一个图片文章。结果:OCT作为外周血管的监测、病变表征、评估退行性、进展性和疾病稳定性的工具具有不断发展的潜力。该技术提供了最佳的高分辨率病变特征,类似于光学活检。结论:OCT作为人体外周血管的体内分析工具提供了最好的结果。将需要更大规模的研究来验证在人类外周动脉中最佳使用的方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Our initial experience in optical coherence tomography in peripheral vasculature: A pictorial essay
Background: Optical coherence tomography (OCT) has been a cornerstone for intracoronary interventions for substantial years. The extrapolation of the benefits of this cutting-edge technology to the peripheral vasculature is still in its nascent stage. This pictorial essay was an endeavor to exhibit the role of OCT as a tool for visualization of peripheral vasculature. Aim: To ascertain adjunctive use of intravascular imaging through OCT of in vivo peripheral human arterial vasculature and to distinguish between lipid-rich, fibrous, and calcified atherosclerotic plaques and other lesions of peripheral vasculature. Subjects and Methods: OCT imaging was performed with commercially available OCT system which is a short mono-rail design with a fiberoptic imaging core integrated into a catheter. The optic imaging core rotates at a rate of 100–180 revolutions/s. OCT pull backs were performed in an automated fashion with simultaneous flushing of iso-osmolar contrast (Visipaque) and normal saline. The visualization of different lesions of peripheral human vasculature through the eye of OCT is presented here as a pictorial essay. Results: OCT has an evolving potential as a tool for monitoring, lesion characterization, assessment of retrogression, progression, and disease stabilization in peripheral vasculature. The technique provides optimal high-resolution lesion characterization akin to an optical biopsy. Conclusions: OCT as a tool for in vivo analysis of human peripheral vasculature provides superlative results. Larger studies will be required to validate a protocol for optimal usage in the peripheral human arteries.
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