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带有铁磁性组件的血管内导管的实时磁共振导航和定位。

Real-time MR navigation and localization of an intravascular catheter with ferromagnetic components.

机构信息

German Cancer Research Center (DKFZ), Medical Physics in Radiology (E020), Im Neuenheimer Feld 280, 69120, Heidelberg, Germany.

出版信息

MAGMA. 2010 Jun;23(3):153-63. doi: 10.1007/s10334-010-0214-y. Epub 2010 May 21.

Abstract

OBJECT

To develop an intravascular catheter with ferromagnetic components that is navigated with MR gradient forces and imaged with dedicated MR sequences in real time.

MATERIALS AND METHODS

The orientation of a device with ferromagnetic components can be controlled by gradient forces. In this work, a 3D input device for interactive real-time control of the force gradient was combined with a dedicated real-time MR pulse sequence. The pulse sequence offered acquisition of FLASH images, force gradient and localization of the ferromagnetic tip with three projections. The technique for localization is a combination of off-set resonance excitation and gradient rephasing. According to the position of the ferromagnetic components from the projections, the imaging slice is automatically aligned with the ferromagnetic component. The navigation methods and localization techniques were assessed in phantom and animal studies.

RESULTS

At a reaction time of 24 ms and a frame rate of one image per second, the orientation of a ferromagnetic catheter could be navigated in a complex vascular phantom. The magnetic force generated by a gradient of 28 mT/m could reach up to 100+/-20 microN. The localization of the ferromagnetic tip could be performed with an uncertainty of 1 mm in phantom studies and 4 mm in animal studies.

CONCLUSION

The use of a deflectable catheter with a ferromagnetic tip to target the blood vessels and localize the position of device provides a novel method to use the MR system to image the anatomy and steer an interventional device which helps to increase the precision and speed of endovascular procedures.

摘要

目的

开发一种带有铁磁组件的血管内导管,该导管可通过磁共振梯度力进行导航,并通过专用磁共振序列实时成像。

材料与方法

带有铁磁组件的设备的方向可以通过梯度力来控制。在这项工作中,将具有力梯度的交互式实时控制的 3D 输入设备与专用实时磁共振脉冲序列相结合。该脉冲序列提供了 FLASH 图像的采集、力梯度和三个投影的铁磁尖端定位。定位技术是偏移共振激发和梯度相位重聚的组合。根据来自投影的铁磁组件的位置,自动将成像切片与铁磁组件对齐。在体模和动物研究中评估了导航方法和定位技术。

结果

在 24ms 的反应时间和每秒一帧的帧率下,复杂血管体模中的铁磁导管的方向可以进行导航。梯度为 28mT/m 时产生的磁力可达 100+/-20 微牛顿。在体模研究中,铁磁尖端的定位可以达到 1mm 的不确定度,在动物研究中可以达到 4mm 的不确定度。

结论

使用带有铁磁尖端的可偏转导管来靶向血管并定位设备的位置,为使用磁共振系统对解剖结构进行成像并引导介入设备提供了一种新方法,有助于提高血管内手术的精度和速度。

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