Wacker Frank K, Hillenbrand Claudia M, Duerk Jeffrey L, Lewin Jonathan S
Department of Radiology, Klinik und Hochschulambulanz für Radiologie und Nuklearmedizin, Charité-Universitätsmedizin Berlin, Campus Benjamin Franklin, Hindenburgdamm 30, 12200 Berlin, Germany.
Magn Reson Imaging Clin N Am. 2005 Aug;13(3):431-9. doi: 10.1016/j.mric.2005.04.004.
Reliable visualization and tracking are essential for guiding endovascular devices within blood vessels. The most commonly used methods are susceptibility artifact-based tracking that relies on the artifact created within the image by the device and microcoil- or antenna-based tracking that uses the high signal generated by small MR endovascular receive coils when the transmit coil emits a nonselective radiofrequency pulse. To date, the use of endovascular MR guidance techniques has primarily been confined to animal experiments. There are only a few reports on MR-guided endovascular applications in patients. Therefore, access to the patient within the scanner, dedicated devices, and safety issues remain major challenges. To face these challenges, attention from all radiologists, especially interventional radiologists, is required to make MR-guided endovascular procedures a clinical reality.
可靠的可视化和跟踪对于在血管内引导血管内装置至关重要。最常用的方法是基于磁化率伪影的跟踪,该方法依赖于装置在图像中产生的伪影,以及基于微线圈或天线的跟踪,该方法利用当发射线圈发射非选择性射频脉冲时小型磁共振血管内接收线圈产生的高信号。迄今为止,血管内磁共振引导技术的应用主要局限于动物实验。关于磁共振引导下血管内应用于患者的报道仅有几例。因此,在扫描仪内接近患者、专用设备以及安全问题仍然是主要挑战。为应对这些挑战,需要所有放射科医生,尤其是介入放射科医生的关注,以使磁共振引导下的血管内手术成为临床现实。