Title :
Three-dimensional behavior reproduction of microbubbles in flow under local ultrasound exposure
Author :
Masuda, Kohji ; Ito, Takao ; Koda, Ren ; Hosaka, Naoto ; Mochizuki, Takashi
Author_Institution :
Grad. Sch. of Bio-Applic. & Syst. Eng., Tokyo Univ. of Agric. & Technol., Koganei, Japan
Abstract :
We have researched to control microbubbles in blood vessel by use of the acoustic radiation force for efficient and lower adverse effects medical treatments. However, behavior of microbubbles under the ultrasound exposure is complicated because of many kinds of parameters. In addition blood vessel network in human body is not simple. From these reasons, it is important to estimate emission condition of ultrasound. Therefore, numerical simulation model of microbubbles in flow is introduced. By concerning flow and ultrasound conditions, we have constructed a three-dimensional simulation to reproduce behavior of microbubbles using finite element method (FEM). As the results, the simulation showed good coincidences to the result of experiments in lower frequency, however, radius change of microbubbles and acoustic force perpendicular to the propagation direction should be considered in higher frequency.
Keywords :
blood vessels; bubbles; finite element analysis; flow simulation; ultrasonic therapy; acoustic radiation force; blood vessel network; finite element method; flow simulation; human body; local ultrasound exposure; medical treatments; microbubbles; numerical simulation model; Biomedical engineering; Acoustic radiation force; Bloodvessel; Finite element method; Flow velocity; Microbubble; Simulation;
Conference_Titel :
Biomedical Engineering International Conference (BMEiCON), 2013 6th
Conference_Location :
Amphur Muang
Print_ISBN :
978-1-4799-1466-1
DOI :
10.1109/BMEiCon.2013.6687716