Publication | Closed Access
Utilization of Magnetic Gradients in a Magnetic Navigation System for the Translational Motion of a Micro-Robot in Human Blood Vessels
15
Citations
7
References
2011
Year
EngineeringHuman Blood VesselsField RoboticsMotor ControlBiomedical EngineeringMicroactuatorMagnetic FieldMagnetic SensorMagnetic GradientsKinesiologySoft RoboticsBiomechanicsGradient Saddle CoilsBio-inspired RoboticsMagnetic Navigation SystemKinematicsMicrofluidicsHealth SciencesNanoroboticsMechatronicsMagnetic MeasurementMicro-magnetic ModelingMagnetic DeviceRobotics
This paper proposes a method to generate the translational motions of a micro-robot in human blood vessels by utilizing the magnetic gradients of a magnetic navigation system (MNS). The proposed method was applied to the MNS composed of a Maxwell coil, Helmholtz coil, and uniform and gradient saddle coils, and it was verified through the experiment demonstrating the rectilinear and translational motions of a micro-robot in a plane. This paper also discusses the effective aligning angle for the translational motion of a micro-robot to reduce the required magnetic gradients of the MNS. This research contributes to the effective and therapeutic manipulation of a micro-robot in human blood vessels.
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