DocumentCode :
1248001
Title :
Effects of gas pockets on high-intensity focused ultrasound field
Author :
Hosseini, S. Hamid R ; Zheng, Xinliang ; Vaezy, Shahram
Author_Institution :
Member; Bioelectrics Res. Center, Kumamoto Univ., Kumamoto, Japan
Volume :
58
Issue :
6
fYear :
2011
fDate :
6/1/2011 12:00:00 AM
Firstpage :
1203
Lastpage :
1210
Abstract :
The paper describes experimental and numerical studies of the effects of gas pockets on a high-intensity focused ultrasound (HIFU) field. Air bubbles ranging from 0.8 to 2.4 mm in radius were produced in transparent polyacrylamide tissue-mimicking gels. A single-element 3.5-MHz HIFU transducer was used to sonicate the gel phantoms. The changes in the HIFU beam pattern for air bubbles at different positions were visualized by the Schlieren method. Quantitative measurements of pressure at the HIFU focus by a calibrated needle hydrophone showed considerable reduction in the focal pressure with the presence of an air pocket. The presence of a single 1.2-mm-radius air bubble, at a 5 mm axial pre-focal position, reduced the focal intensity by 50% and increased the lateral focal dimension by 50%. For air bubbles at pre-focal position close to the focus, lesion formation was observed not at the theoretical focus, but in front of the air bubble and the air bubble became a barrier for the post-focal ultrasound propagation. The effects of reflection were simulated numerically and were compared with the experiments. The results can be used as guidelines for evaluation of potential safety concerns produced by trapped gas-pockets in various HIFU therapies.
Keywords :
biomedical ultrasonics; bubbles; hydrophones; medical image processing; phantoms; polymer gels; schlieren systems; tumours; ultrasonic focusing; ultrasonic measurement; ultrasonic transducers; HIFU transducer; Schlieren method; air bubbles; axial prefocal position; calibrated needle hydrophone; frequency 3.5 MHz; gas pockets; gel phantoms; high-intensity focused ultrasound field; lateral focal dimension; lesion formation; post-focal ultrasound propagation; pressure measurements; size 0.8 mm to 2.4 mm; sonication; transparent polyacrylamide tissue-mimicking gels; trapped gas-pockets; Acoustics; Lesions; Phantoms; Shape; Transducers; Ultrasonic imaging; Visualization; Gases; Gels; High-Intensity Focused Ultrasound Ablation; Models, Biological; Phantoms, Imaging; Pressure;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2011.1930
Filename :
5895034
Link To Document :
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