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比较使用光学成像和 MRI 测量的可磁导向导管的偏转角。

Comparing deflection measurements of a magnetically steerable catheter using optical imaging and MRI.

机构信息

Department of Radiology and Biomedical Imaging, University of California San Francisco, San Francisco, California 94143.

出版信息

Med Phys. 2014 Feb;41(2):022305. doi: 10.1118/1.4861823.

Abstract

PURPOSE

Magnetic resonance imaging (MRI) is an emerging modality for interventional radiology, giving clinicians another tool for minimally invasive image-guided interventional procedures. Difficulties associated with endovascular catheter navigation using MRI guidance led to the development of a magnetically steerable catheter. The focus of this study was to mechanically characterize deflections of two different prototypes of the magnetically steerable catheter in vitro to better understand their efficacy.

METHODS

A mathematical model for deflection of the magnetically steerable catheter is formulated based on the principle that at equilibrium the mechanical and magnetic torques are equal to each other. Furthermore, two different image based methods for empirically measuring the catheter deflection angle are presented. The first, referred to as the absolute tip method, measures the angle of the line that is tangential to the catheter tip. The second, referred to the base to tip method, is an approximation that is used when it is not possible to measure the angle of the tangent line. Optical images of the catheter deflection are analyzed using the absolute tip method to quantitatively validate the predicted deflections from the mathematical model. Optical images of the catheter deflection are also analyzed using the base to tip method to quantitatively determine the differences between the absolute tip and base to tip methods. Finally, the optical images are compared to MR images using the base to tip method to determine the accuracy of measuring the catheter deflection using MR.

RESULTS

The optical catheter deflection angles measured for both catheter prototypes using the absolute tip method fit very well to the mathematical model (R(2) = 0.91 and 0.86 for each prototype, respectively). It was found that the angles measured using the base to tip method were consistently smaller than those measured using the absolute tip method. The deflection angles measured using optical data did not demonstrate a significant difference from the angles measured using MR image data when compared using the base to tip method.

CONCLUSIONS

This study validates the theoretical description of the magnetically steerable catheter, while also giving insight into different methods and modalities for measuring the deflection angles of the prototype catheters. These results can be used to mechanically model future iterations of the design. Quantifying the difference between the different methods for measuring catheter deflection will be important when making deflection measurements in future studies. Finally, MR images can be used to reliably measure deflection angles since there is no significant difference between the MR and optical measurements.

摘要

目的

磁共振成像(MRI)是介入放射学的一种新兴模式,为临床医生提供了另一种用于微创影像引导介入手术的工具。使用 MRI 引导进行血管内导管导航存在困难,这导致了可磁控导管的发展。本研究的重点是体外对两种不同的可磁控导管原型进行机械偏转特性分析,以更好地了解其疗效。

方法

基于平衡时机械转矩和磁转矩相等的原理,建立了可磁控导管偏转的数学模型。此外,还提出了两种基于图像的经验测量导管偏转角度的方法。第一种方法称为绝对尖端法,测量与导管尖端相切的线的角度。第二种方法称为从尖端到基座法,当无法测量切线角度时使用该方法进行近似。使用绝对尖端法对导管偏转的光学图像进行分析,对数学模型预测的偏转进行定量验证。还使用从尖端到基座法对导管偏转的光学图像进行分析,以定量确定绝对尖端法和从尖端到基座法之间的差异。最后,使用从尖端到基座法将光学图像与 MR 图像进行比较,以确定使用 MR 测量导管偏转的准确性。

结果

使用绝对尖端法测量两种导管原型的光学导管偏转角度与数学模型非常吻合(分别为每个原型的 R(2) = 0.91 和 0.86)。结果发现,使用从尖端到基座法测量的角度始终小于使用绝对尖端法测量的角度。当使用从尖端到基座法进行比较时,使用光学数据测量的偏转角度与使用 MR 图像数据测量的角度没有显著差异。

结论

本研究验证了可磁控导管的理论描述,同时深入了解了测量原型导管偏转角度的不同方法和模式。这些结果可用于对设计的后续迭代进行机械建模。在未来的研究中,量化测量导管偏转的不同方法之间的差异非常重要。最后,由于 MR 和光学测量之间没有显著差异,因此可以使用 MR 图像可靠地测量偏转角度。

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