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CathEye:一种用于影像引导心血管手术的前视超声导管。

The CathEye: A Forward-Looking Ultrasound Catheter for Image-Guided Cardiovascular Procedures.

出版信息

IEEE Trans Med Imaging. 2024 Jan;43(1):449-458. doi: 10.1109/TMI.2023.3309781. Epub 2024 Jan 2.

Abstract

Catheter based procedures are typically guided by X-Ray, which suffers from low soft tissue contrast and only provides 2D projection images of a 3D volume. Intravascular ultrasound (IVUS) can serve as a complementary imaging technique. Forward viewing catheters are useful for visualizing obstructions along the path of the catheter. The CathEye system mechanically steers a single-element transducer to generate a forward-looking surface reconstruction from an irregularly spaced 2-D scan pattern. The steerable catheter leverages an expandable frame with cables to manipulate the distal end independently of vessel tortuosity. The tip position is estimated by measuring the cable displacements and used to create surface reconstructions of the imaging workspace with the single-element transducer. CathEye's imaging capabilities were tested with an agar phantom and an ex vivo chronic total occlusion (CTO) sample while the catheter was confined to various tortuous paths. The CathEye maintained similar scan patterns regardless of path tortuosity and was able to recreate major features of the imaging targets, such as holes and extrusions. The feasibility of forward-looking IVUS with the CathEye is demonstrated in this study. The CathEye mechanism can be applied to other imaging modalities with field-of-view (FOV) limitations and represents the basis for an interventional device fully integrated with image guidance.

摘要

基于导管的程序通常由 X 射线引导,X 射线的软组织对比度低,只能提供三维容积的二维投影图像。血管内超声(IVUS)可以作为一种补充成像技术。前向观察导管可用于观察导管路径上的阻塞物。CathEye 系统通过机械方式引导单个元件换能器,根据不规则间隔的二维扫描模式生成前向表面重建。可转向导管利用可扩展框架和电缆来独立于血管迂曲操纵远端。通过测量电缆的位移来估计尖端位置,并使用单元件换能器创建成像工作空间的表面重建。在导管被限制在各种迂曲路径的情况下,使用琼脂体模和离体慢性完全闭塞(CTO)样本对 CathEye 的成像能力进行了测试。无论路径迂曲如何,CathEye 都能保持相似的扫描模式,并能够重现成像目标的主要特征,如孔和突出物。本研究证明了 CathEye 进行前向 IVUS 的可行性。CathEye 机制可应用于具有视场(FOV)限制的其他成像方式,并为完全集成图像引导的介入设备奠定基础。

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