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Closed bore XMR (CBXMR) systems for aortic valve replacement: Active magnetic shielding of x-ray tubes

机译:封闭孔XMR(CBXMR)系统用于更换主动脉瓣:X射线管的有源磁屏蔽

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摘要

Hybrid closed bore x-ray∕MRI systems are being developed to improve the safety and efficacy of percutaneous aortic valve replacement procedures by harnessing the complementary strengths of the x-ray and MRI modalities in a single interventional suite without requiring patient transfer between two rooms. These systems are composed of an x-ray C-arm in close proximity (≈1 m) to an MRI scanner. The MRI magnetic fringe field can cause the electron beam in the x-ray tube to deflect. The deflection causes the x-ray field of view to shift position on the detector receptacle. This could result in unnecessary radiation exposure to the patient and the staff in the cardiac catheterization laboratory. Therefore, the electron beam deflection must be corrected. The authors developed an active magnetic shielding system that can correct for electron beam deflection to within an accuracy of 5% without truncating the field of view or increasing exposure to the patient. This system was able to automatically adjust to different field strengths as the external magnetic field acting on the x-ray tube was changed. Although a small torque was observed on the shielding coils of the active shielding system when they were placed in a magnetic field, this torque will not impact their performance if they are securely mounted on the x-ray tube and the C-arm. The heating of the coils of the shielding system for use in the clinic caused by electric current was found to be slow enough not to require a dedicated cooling system for one percutaneous aortic valve replacement procedure. However, a cooling system will be required if multiple procedures are performed in one session.
机译:通过在单个介入套件中利用X射线和MRI方式的互补优势,无需患者在两个房间之间转移,正在开发混合式闭孔X射线MRI系统,以提高经皮主动脉瓣置换手术的安全性和有效性。这些系统由与MRI扫描仪非常接近(≈1 m)的X射线C型臂组成。 MRI边缘磁场会导致X射线管中的电子束偏转。偏转导致X射线视场移动到检测器接收器上的位置。这可能导致不必要的辐射暴露于心脏导管实验室的患者和工作人员。因此,必须校正电子束偏转。作者开发了一种有源磁屏蔽系统,该系统可以将电子束偏转校正到5%的精度内,而不会缩短视场或增加对患者的暴露。随着作用在X射线管上的外部磁场的改变,该系统能够自动适应不同的场强。尽管将有源屏蔽系统的屏蔽线圈放在磁场中时观察到很小的扭矩,但是如果将它们牢固地安装在X射线管和C型臂上,则该扭矩不会影响其性能。发现由电流引起的用于临床中的屏蔽系统的线圈的加热足够缓慢,以至于不需要用于一种经皮主动脉瓣置换程序的专用冷却系统。但是,如果在一个会话中执行多个过程,则需要冷却系统。

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