DocumentCode :
1361062
Title :
Numerical study of a simple transcranial focused ultrasound system applied to blood-brain barrier opening
Author :
Deffieux, Thomas ; Konofagou, Elisa E.
Author_Institution :
Dept. of Biomed. Eng., Columbia Univ., New York, NY, USA
Volume :
57
Issue :
12
fYear :
2010
fDate :
12/1/2010 12:00:00 AM
Firstpage :
2637
Lastpage :
2653
Abstract :
In this paper, we investigate the focalization properties of single-element transducers at low frequencies (300 to 1000 kHz) through primate and human skulls. The study addresses the transcranial targeting involved in ultrasound- induced blood-brain barrier (BBB) opening with clinically relevant targets such as the hippocampus and the basal ganglia, which are typically affected by early Alzheimer´s and Parkinson´s disease, respectively. A finite-difference, timedomain simulation platform is used to solve the 3-D linear acoustic wave equation with CT-based acoustic maps of the skulls. The targeted brain structures were extracted from 3-D brain atlases registered with the skulls and used to virtually position and orient the transducers. The effect of frequency is first investigated and the targeting of the different structures is then tested. The frequency of 500 kHz provided the best tradeoff between phase aberrations and standing wave effects in the human case, whereas the frequency of 800 kHz was most suitable in the case of the primate skull. A fast periodic linear chirp method was developed and found capable of reducing the standing wave effects. Such a simple, affordable, and convenient system is concluded to be feasible for BBB opening in primates and humans and could thus allow for its broader impact and applications.
Keywords :
bioacoustics; biomedical transducers; biomedical ultrasonics; blood; brain models; computerised tomography; diseases; finite difference time-domain analysis; medical image processing; neurophysiology; 3D brain atlas; 3D linear acoustic wave equation; Alzheimer disease; CT-based acoustic maps; Parkinsons disease; brain structures; fast periodic linear chirp method; finite-difference time-domain simulation platform; focalization properties; frequency 300 kHz to 1000 kHz; human skulls; phase aberrations; primate skulls; single-element transducers; standing wave effects; transcranial focused ultrasound system; ultrasound-induced blood-brain barrier opening; Acoustics; Brain modeling; Cranial; Numerical models; Skull; Solid modeling; Ultrasonic imaging; Animals; Blood-Brain Barrier; Computer Simulation; Hippocampus; Humans; Image Processing, Computer-Assisted; Macaca mulatta; Microbubbles; Signal Processing, Computer-Assisted; Skull; Software; Tomography, X-Ray Computed; Transducers; Ultrasonography, Doppler, Transcranial;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2010.1738
Filename :
5610550
Link To Document :
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