Lee Hyowon, Xu Qing, Ephrati Jeremy, Bergsneider Marvin, Judy Jack W
Biomedical Engineering Interdepartmental Program at University of California, Los Angeles, 420 Westwood Plaza, Engineering IV 64-144, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:907-10. doi: 10.1109/IEMBS.2010.5627830.
Here we demonstrate the mechanical robustness of microfabricated torsional magnetic actuators in withstanding the magnetic fields produced by a 7 T MRI magnet. The static and dynamic mechanical characteristics of 30 devices were quantitatively measured before and after exposure to both uniform and non-uniform magnetic fields. The results show no statistically significant change in both the static and dynamic mechanical performance, which mitigates concerns about the mechanical compatibility of our devices with MRI scanners. Additional experiments are required to quantify the potential image-artifact size and radio-frequency-induced heating caused by the magnetic microactuators inside an MRI scanner.
在此,我们展示了微纳加工的扭转磁致动器在承受7T磁共振成像(MRI)磁体产生的磁场时的机械鲁棒性。在暴露于均匀和非均匀磁场之前和之后,对30个器件的静态和动态机械特性进行了定量测量。结果表明,静态和动态机械性能均无统计学上的显著变化,这减轻了对我们的器件与MRI扫描仪机械兼容性的担忧。需要进行额外的实验来量化MRI扫描仪内部磁微致动器引起的潜在图像伪影大小和射频感应加热。