DocumentCode :
650061
Title :
3D cartesian system for the characterization of electromagnetic and ultrasonic applicators: Validation and performance testing
Author :
Martinez, O.K. ; Leija, L. ; Vera, Alonzo
Author_Institution :
Dept. of Electr. Eng., CINVESTAV-IPN, Mexico City, Mexico
fYear :
2013
fDate :
Sept. 30 2013-Oct. 4 2013
Firstpage :
160
Lastpage :
162
Abstract :
It should be considered that in ultrasound or microwave ablation tests, it is important to know the effective area of the applicators. Also, each applicator should be characterized with adequate precision to meet the needs of the application. In order to achieve the mentioned-above objectives, we must have control of the position in space with respect to tested tissue or phantom. This paper presents the development of a three-dimensional cartesian position system being useful for working spaces of the following dimensions: 60 cm × 40 cm × 18 cm. The purpose of the proposed system is to perform temperature measurements in phantoms and tissue, and evaluate the performance of applicators of U.S. (Ultrasound) applicators as well as electromagnetic energy (EM) and radio frequency (RF). The movement of each axis of the positioner is controlled by a stepping motor running sequences based on the displacement that the user enters through a computer which are interpreted and executed by a microcontroller to finally display the results on the screen through a graphical interface.
Keywords :
biological tissues; biothermics; graphical user interfaces; medical control systems; microcontrollers; microwave heating; position control; stepping motors; ultrasonic therapy; U.S. applicators; electromagnetic applicator; electromagnetic energy; graphical interface; microcontroller; microwave ablation test; performance testing; phantoms; position control; positioner axis movement; radio frequency energy; stepping motor running sequences; temperature measurements; tested tissue; three-dimensional cartesian position system; ultrasonic applicator; ultrasound ablation test; validation testing; working spaces; 3D Cartesian system; Electromagnetic compatibility; RF applicator;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical Engineering, Computing Science and Automatic Control (CCE), 2013 10th International Conference on
Conference_Location :
Mexico City
Print_ISBN :
978-1-4799-1460-9
Type :
conf
DOI :
10.1109/ICEEE.2013.6676092
Filename :
6676092
Link To Document :
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