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Generating two independent rotating magnetic fields with a single magnetic dipole for the propulsion of untethered magnetic devices

机译:利用单个磁偶极子产生两个独立的旋转磁场,以推动不受束缚的磁性设备

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Untethered magnetic devices (UMDs) driven by rotating magnetic fields have been proposed for applications in minimally invasive medicine. Previous work has explored the propulsion and guidance of a single UMD using a rotating magnet dipole source, and actuation of multiple UMDs has focused on the use of uniform magnetic fields. This work seeks to extend the methods for remote actuation using a single magnet dipole source to generate two rotating magnetic fields with arbitrary independent rotation axes at any two points with a common rotation frequency. The solutions found show that there are multiple positions and rotation axes of the magnet dipole that can generate these rotating fields. The method is demonstrated with two screw-type UMDs propelled independently within an agar gel block using a single permanent-magnet actuator.
机译:已经提出了由旋转磁场驱动的非束缚磁性装置(UMD)用于微创医学中的应用。先前的工作已经探索了使用旋转磁偶极子源的单个UMD的推进和制导,而多个UMD的致动则集中在均匀磁场的使用上。这项工作试图扩展使用单个磁偶极子源进行远程致动的方法,以在具有相同旋转频率的任意两个点处生成具有任意独立旋转轴的两个旋转磁场。找到的解决方案表明,磁偶极子有多个位置和旋转轴可以生成这些旋转场。该方法通过使用单个永磁驱动器在琼脂凝胶块内独立推进的两个螺杆式UMD进行了演示。

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