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Evaluation of Magnetic Resonance Imaging Issues for Implantable Microfabricated Magnetic Actuators

机译:植入式微型磁致动器的磁共振成像问题评估

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摘要

The mechanical robustness of microfabricated torsional magnetic actuators in withstanding the strong static fields (7 T) and time-varying field gradients (17 T/m) produced by an MR system was studied in this investigation. The static and dynamic mechanical characteristics of 30 devices were quantitatively measured before and after exposure to both strong uniform and non-uniform magnetic fields. The results showed no statistically significant change in both the static and dynamic mechanical performance, which mitigate concerns about the mechanical stability of these devices in association with MR systems under the conditions used for this assessment. The MR-induced heating was also measured in a 3-T/128-MHz MR system. The results showed a minimal increase (1.6 °C) in temperature due to the presence of the magnetic microactuator array. Finally, the size of the MR-image artifacts created by the magnetic microdevices were quantified. The signal loss caused by the devices was approximately four times greater than the size of the device.
机译:在这项研究中,研究了微型扭转磁致动器在承受强静态磁场(7 T)和时变磁场梯度(17 T / m)时的机械稳定性。在暴露于强均匀磁场和非均匀磁场之前和之后,定量测量了30种设备的静态和动态机械特性。结果表明,静态和动态机械性能均无统计学上的显着变化,从而减轻了在此评估条件下与MR系统相关的这些设备的机械稳定性的担忧。在3-T / 128-MHz MR系统中也测量了MR引起的发热。结果表明,由于存在磁微致动器阵列,温度出现了最小增加(1.6°C)。最后,对由磁性微型设备产生的MR图像伪影的大小进行了量化。由设备引起的信号损耗大约是设备尺寸的四倍。

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