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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Catheter tracking and visualization using 19F nuclear magnetic resonance.
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Catheter tracking and visualization using 19F nuclear magnetic resonance.

机译:使用19F核磁共振对导管进行跟踪和可视化。

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摘要

This work presents an investigation into catheter visualization and localization using 19F nuclear magnetic resonance (NMR) in conjunction with proton imaging. For this purpose, the imaging capabilities of a standard system were extended to allow for 19F excitation and signal detection. Two modes of operation were implemented: 1) a real-time tracking mode that provides tip tracking and automatic slice position updates interleaved with real-time, interactive proton imaging; and 2) a non-real-time catheter length visualization mode in which the entire length of a catheter can be assessed. Initial phantom experiments were conducted with the use of an angiographic balloon catheter filled with the blood substitute perfluorooctylbromide (PFOB). Using limited bandwidth excitation centered at the resonances of the CF2 groups of PFOB, we found that sufficient signal could be received to facilitate tip tracking during catheter motion and length visualization for various catheter configurations. The present approach is considered a promising alternative to existing methods, which either are associated with safety concerns (if active markers are employed) or suffer from insufficient, direction-dependent contrast (if passive visualization is used). Furthermore, our approach enables visualization of the entire length of the catheter. The proposed method provides a safe technique that, unlike electrical or optical devices, does not require modification of commercially available catheters.
机译:这项工作提出了结合19F核磁共振(NMR)和质子成像对导管可视化和定位的研究。为此,扩展了标准系统的成像功能,以允许19F激发和信号检测。实现了两种操作模式:1)实时跟踪模式,可提供尖端跟踪和自动切片位置更新,并与实时交互式质子成像相交织; 2)非实时导管长度可视化模式,其中可以评估导管的整个长度。最初的幻像实验是使用装有血液替代品全氟辛基溴化物(PFOB)的血管造影球囊导管进行的。使用以PFOB的CF2组的共振为中心的有限带宽激发,我们发现可以接收到足够的信号,以便在导管运动和各种导管配置的长度可视化期间促进尖端跟踪。本方法被认为是现有方法的有前途的替代方法,这些方法要么与安全性相关(如果使用主动标记),要么遭受不足的,与方向有关的对比度(如果使用被动可视化)。此外,我们的方法可以可视化导管的整个长度。所提出的方法提供了一种安全的技术,与电气或光学设备不同,该技术不需要修改市售导管。

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