DocumentCode
2486294
Title
QCA based navigation for nano robot for the treatment of coronary artery disease
Author
Suraj, H. ; Reddy, Vijender Busi
Author_Institution
Mol. Bio Phys. Dept., Indian Inst. of Sci., Bangalore, India
fYear
2011
fDate
30-31 May 2011
Firstpage
131
Lastpage
136
Abstract
Coronary artery disease (CAD) is the largest cause of death and disability in the world. Besides medicines, the principle treatment of this condition requires opening of the narrowed arteries, responsible for angina and other symptoms of the disease, by angioplasty or surgery. The current solution for CAD is implant of metallic stents which has several drawbacks. The metallic stents has to be replaced on timely basis through multiple surgeries. Nanotechnology, the promising technology of the 21st century can come as a path breaking technology to cure CAD. In this paper we have developed an algorithm for the propagation of the nano robot and implemented a nano controller using QCA architecture and simulation results were compared with the matlab simulation. During blood clot the pressure exerted by the blood on the arteries is high, the increase in pressure can be modeled as the change in the conductance of the of the piezo electric ZNO nano wire. The conductance change above a threshold can trigger transmission of EM signals through micro strip antenna. Upon the reception of signal the nano robot will navigate towards the blood clot of the constricted arteries.
Keywords
II-VI semiconductors; bioelectric phenomena; biomedical materials; blood; blood vessels; cellular automata; diseases; electrical conductivity; electromagnetic wave transmission; medical robotics; microstrip antennas; nanobiotechnology; nanowires; piezoelectric semiconductors; piezoelectricity; stents; surgery; wide band gap semiconductors; zinc compounds; EM signals transmission; QCA based navigation; ZnO; angina; angioplasty; blood clot; conductance; coronary artery disease treatment; metallic stent implant; microstrip antenna; nano controller; nanorobot; nanotechnology; piezoelectric ZNO nano wire; quantum cellular automata based navigation; signal reception; surgery; Arteries; Clocks; Force; Mathematical model; Robots; Wires; Zinc oxide; Carbon Nano Tube (CNT); Cardiac Artery Disease (CAD); Quantum Cellular Automata (QCA); Quantum Dot (QD); Zinc Oxide Nano Wire (ZNO);
fLanguage
English
Publisher
ieee
Conference_Titel
Medical Measurements and Applications Proceedings (MeMeA), 2011 IEEE International Workshop on
Conference_Location
Bari
Print_ISBN
978-1-4244-9336-4
Type
conf
DOI
10.1109/MeMeA.2011.5966643
Filename
5966643
Link To Document