DocumentCode :
721565
Title :
A spiral microrobot performing linear and drilling motions by magnetic gradient and rotating uniform magnetic field to unclog blocked human blood vessels
Author :
Jang, G. ; Jeon, S. ; Nam, J. ; Lee, W.
Author_Institution :
Campolindo High Sch., Moraga, CA, USA
fYear :
2015
fDate :
11-15 May 2015
Firstpage :
1
Lastpage :
1
Abstract :
More than one out of three American adults has one or more types of cardiovascular disease [1]. Occlusive coronary artery disease is one of the main heart diseases that results from plaque buildup in blood vessels, blocking the flow of blood. The most common treatment uses a tapered-tip guide-wire and catheter to unclog the blocked blood vessel, which is very hard to control through twisted and narrow blood vessels [2]. In this type of operation, cardiologists are constantly exposed to radiation from x-rays because they have to monitor the blocked blood vessels and the location of the guidewire and catheter, so they wear lead shielding around their bodies to protect themselves from radiation [3]. Microrobots that are controlled by magnetic fields generated from the Magnetic Navigation System (MNS) have been actively investigated to replace manually controlled conventional guidewires and catheters, eliminating cardiologists´ exposure to radiation. One of the promising microrobots is a spiral microrobot actuated by a rotating magnetic field [4, 5, 6]. However, their spiral microrobots cannot separate navigating and drilling motions, and rotating blades may damage healthy blood vessels while navigating through the blood vessel to reach the target point.
Keywords :
biomagnetism; blood vessels; catheters; diseases; medical robotics; microrobots; surgery; American adults; Magnetic Navigation System; blocked human blood vessels; blood flow; cardiovascular disease; catheter; drilling motions; guidewire; heart diseases; linear motions; magnetic gradient; oclusive coronary artery disease; rotating uniform magnetic field; spiral microrobot; Blood vessels; Magnetic noise; Magnetic separation; Magnetic shielding; Navigation; Spirals;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Magnetics Conference (INTERMAG), 2015 IEEE
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-7321-7
Type :
conf
DOI :
10.1109/INTMAG.2015.7156709
Filename :
7156709
Link To Document :
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