DocumentCode
1993057
Title
MR guidance, monitoring and control of Brain HIFU therapy in small animals: In vivo demonstration in rats at 7T
Author
Larrat, B. ; Pernot, M. ; Dervishi, E. ; Souilah, A. ; Seilhean, D. ; Marie, Y. ; Boch, A.L. ; Aubry, J.-F. ; Fink, M. ; Tanter, M.
Author_Institution
Inst. Langevin, ESPCI ParisTech, Paris, France
fYear
2009
fDate
20-23 Sept. 2009
Firstpage
204
Lastpage
207
Abstract
In the framework of HIFU transcranial brain therapy, it is mandatory to develop techniques capable of assessing the focusing quality and location before the treatment. Monitoring heat deposition in real time and verifying the extension of the treated area are also important steps. In this study, an imaging protocol is proposed to:1/ locate the US radiation force induced displacement in tissues and quantify the acoustic pressure at focus prior to HIFU; 2/ monitor the temperature rise during HIFU; and 3/ assess the changes in elasticity in the treated area. A 7T MRI scanner was equipped with a home-made stereotactic frame for rats and a US focused transducer working at 1.5 MHz. Such a tool is key for the evaluation of the biological effects of HIFU on brain tissue and tumors. The proposed protocol was successfully tested on 12 rats with and without injected tumors. The accurate localization of the focal point prior to HIFU was demonstrated in vivo. Furthermore, the pressure estimation in situ allowed to accurately simulate the heat deposition at focus and to plan the treatment (electrical power, duration). The temperature measurements were in good accordance with the predicted curves. The elasticity maps showed significant changes after treatment in some cases.
Keywords
biomagnetism; biomechanics; biomedical MRI; biomedical transducers; biomedical ultrasonics; brain; elasticity; tumours; ultrasonic therapy; ultrasonic transducers; MRI scanner; acoustic pressure; brain tissue; elasticity; heat deposition monitoring; high intensity focused ultrasound imaging; home-made stereotactic frame; imaging protocol; magnetic flux density 7 T; pressure estimation; temperature measurements; transcranial brain therapy; transducer; tumors; ultrasound radiation force; Animals; Elasticity; Focusing; In vivo; Medical treatment; Monitoring; Neoplasms; Protocols; Rats; Temperature measurement; High Intensity Focused Ultrasound; Magnetic Resonance Elastography; Magnetic Resonance Thermometry; Monitoring; Radiation Force Localization; brain; rat; transcranial;
fLanguage
English
Publisher
ieee
Conference_Titel
Ultrasonics Symposium (IUS), 2009 IEEE International
Conference_Location
Rome
ISSN
1948-5719
Print_ISBN
978-1-4244-4389-5
Electronic_ISBN
1948-5719
Type
conf
DOI
10.1109/ULTSYM.2009.5441499
Filename
5441499
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