DocumentCode :
1481473
Title :
Interstitial thermal ablation with a fast rotating dual-mode transducer
Author :
Bouchoux, Guillaume ; Owen, Neil R. ; Chavrier, Françoise ; Berriet, Rémi ; Fleury, Gérard ; Chapelon, Jean-Yves ; Lafon, Cyril
Author_Institution :
Inst. Nat. de la Sante et de la Rech. Medicale (Inserm), Lyon, France
Volume :
57
Issue :
5
fYear :
2010
fDate :
5/1/2010 12:00:00 AM
Firstpage :
1066
Lastpage :
1095
Abstract :
Interstitial ultrasound applicators can be a minimally invasive alternative for treating targets that are unresectable or are inaccessible by extracorporeal methods. Dualmode transducers for ultrasound imaging and therapy were developed to address the constraints of a miniaturized applicator and real-time treatment monitoring. We propose an original treatment strategy that combines ultrasound imaging and therapy using a dual-mode transducer rotating at 8 revolutions per second. Real-time B-mode imaging was interrupted to emit high-intensity ultrasound over a selected therapy aperture. A full 360?? image was taken every 8th rotation to image the therapy aperture. Numerical simulations were performed to study the effect of rotation on tissue heating, and to study the effect of the treatment sequence on transducer temperature. With the time-averaged transducer surface intensity held at 12 W/ cm2 to maintain transducer temperature below 66??C, higher field intensities and deeper lesions were produced by narrower therapy apertures. A prototype system was built and tested using in vitro samples of porcine liver. Lesions up to 8 mm were produced using a time-averaged transducer surface intensity of 12 W/cm2 applied for a period of 240 s over a therapy aperture of 40??. Apparent strain imaging of the therapy aperture improved the contrast between treated and spared tissues, which could not be differentiated on B-mode images. With appropriate limits on the transducer output, real-time imaging and deep thermal ablation are feasible and sustainable using a rotating dual-mode transducer.
Keywords :
biological tissues; biomedical ultrasonics; biothermics; numerical analysis; ultrasonic therapy; ultrasonic transducers; fast rotating dual-mode transducer; interstitial thermal ablation; interstitial ultrasound applicators; numerical simulations; porcine liver; real-time treatment monitoring; rotation effect; strain imaging; tissue heating; transducer temperature; treatment sequence; ultrasound imaging; ultrasound therapy; Apertures; Applicators; Lesions; Medical treatment; Minimally invasive surgery; Monitoring; Surface treatment; Temperature; Ultrasonic imaging; Ultrasonic transducers; Ablation Techniques; Animals; Computer Simulation; Hot Temperature; Liver; Necrosis; Signal Processing, Computer-Assisted; Swine; Transducers; Ultrasonography, Interventional;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2010.1520
Filename :
5456257
Link To Document :
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