DocumentCode
3415326
Title
Experimental characterization of a robotic drug delivery system based on magnetic propulsion
Author
Hao Zhou ; Alici, Gursel ; Weihua Li ; Ghanbar, S.
Author_Institution
Sch. of Mech., Mater. & Mechatron. Eng., Univ. of Wollongong, Wollongong, NSW, Australia
fYear
2011
fDate
3-7 July 2011
Firstpage
209
Lastpage
214
Abstract
This paper reports on the experimental characterization of a robotic drug delivery system based on an endoscopic capsule propelled in water and silicone oil using electromagnetic actuation. Silicon oil is specifically chosen to mimic the viscous environment in the gastrointestinal (GI) tract within the human body. A permanent magnet is embedded inside the capsule to make it responsive to the external magnetic field. The external electromagnetic system is comprised of the power supply and a Maxwell coil. From the results, it is observed that such a system is able to propel the pill-sized magnetic robot. The motion and velocity of the robot can be controlled by the input currents. The change in either the capsule´s transient velocity or acceleration indicates the viscoelastic features of the simulated environment.
Keywords
biomechanics; coils; drug delivery systems; electromagnetic actuators; endoscopes; medical robotics; permanent magnets; power supplies to apparatus; viscoelasticity; Maxwell coil; electromagnetic actuation; endoscopic capsule; external electromagnetic system; external magnetic field; gastrointestinal tract; input current; magnetic propulsion; permanent magnet; pill sized magnetic robot; power supply; robotic drug delivery; silicone oil; viscoelastic features; viscous environment; water; Coils; Drug delivery; Magnetic fields; Magnetic flux; Propulsion; Robots; Saturation magnetization;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Intelligent Mechatronics (AIM), 2011 IEEE/ASME International Conference on
Conference_Location
Budapest
ISSN
2159-6247
Print_ISBN
978-1-4577-0838-1
Type
conf
DOI
10.1109/AIM.2011.6027069
Filename
6027069
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