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Generating Rotating Magnetic Fields With a Single Permanent Magnet for Propulsion of Untethered Magnetic Devices in a Lumen

机译:用单个永磁体产生旋转磁场以推动管腔中的非束缚磁性装置

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To date, untethered magnetic devices actuated with a single rotating permanent magnet, such as active capsule endoscopes and magnetic microrobots, have been constrained to operate in positions where the rotating dipole field behavior is simple and easy to visualize. In this paper, we show how to generate a rotating magnetic field with any desired rotation axis, for magnetic device actuation, at any device position in space using a single rotating-magnet actuator. The methods presented can control untethered rotating magnetic devices, while the rotating actuator magnet follows trajectories independent of the untethered devices themselves. We demonstrate our methods by actuating rotating magnetic devices in a lumen. Applications include minimally invasive medical tasks requiring an untethered magnetic device to operate in natural lumen pathways of the body (e.g., the gastrointestinal system, the subarachnoid space of the nervous system, or vasculature).
机译:迄今为止,已经限制了由单个旋转式永磁体致动的束缚磁性设备(例如有源胶囊内窥镜和磁性微型机器人)必须在旋转偶极子场行为简单且易于观察的位置上运行。在本文中,我们展示了如何使用单个旋转磁铁致动器在空间中的任何装置位置产生具有任何所需旋转轴的旋转磁场,以进行磁性装置致动。提出的方法可以控制不受束缚的旋转磁性设备,而旋转的致动器磁体遵循独立于不受束缚的设备本身的轨迹。我们通过启动内腔中的旋转磁性设备来演示我们的方法。应用包括微创医疗任务,需要无束缚的磁性设备在人体的自然管腔通路(例如胃肠系统,神经系统的蛛网膜下腔或脉管系统)中操作。

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