DocumentCode :
1153270
Title :
In Vivo Feasibility of Real-Time Monitoring of Focused Ultrasound Surgery (FUS) Using Harmonic Motion Imaging (HMI)
Author :
Maleke, Caroline ; Konofagou, Elisa E.
Author_Institution :
Dept. of Biomed. Eng., Columbia Univ., New York, NY, USA
Volume :
57
Issue :
1
fYear :
2010
Firstpage :
7
Lastpage :
11
Abstract :
In this study, the Harmonic Motion Imaging for Focused Ultrasound (HMIFU) technique is applied to monitor changes in mechanical properties of tissues during thermal therapy in a transgenic breast cancer mouse model in vivo. An HMIFU system, composed of a 4.5-MHz focused ultrasound (FUS) and a 3.3-MHz phased-array imaging transducer, was mechanically moved to image and ablate the entire tumor. The FUS transducer was driven by an amplitude-modulated (AM) signal at 15 Hz. The acoustic intensity (Ispta) was equal to 1050 W/cm2 at the focus. A digital low-pass filter was used to filter out the spectrum of the FUS beam and its harmonics prior to displacement estimation. The resulting axial displacement was estimated using 1-D cross-correlation on the acquired RF signals. Results from two mice with eight lesions formed in each mouse (16 lesions total) showed that the average peak-to-peak displacement amplitude before and after lesion formation was respectively equal to 17.34 ?? 1.34 ??m and 10.98 ?? 1.82 ??m (p < 0.001). Cell death was also confirmed by hematoxylin and eosin histology. HMI displacement can be used to monitor the relative tissue stiffness changes in real time during heating so that the treatment procedure can be performed in a time-efficient manner. The HMIFU system may, therefore, constitute a cost-efficient and reliable alternative for real-time monitoring of thermal ablation.
Keywords :
biomedical ultrasonics; biothermics; cancer; patient monitoring; surgery; tumours; ultrasonic transducers; FUS transducer; HMIFU technique; Harmonic Motion Imaging; ablation; biological tissues; cell death; eosin histology; feasibility; focused ultrasound surgery; frequency 15 Hz; frequency 3.3 MHz; frequency 4.5 MHz; hematoxylin histology; real time monitoring; thermal therapy; transgenic breast cancer; tumor; Acoustic transducers; Digital filters; Focusing; In vivo; Lesions; Mice; Monitoring; Power harmonic filters; Ultrasonic imaging; Ultrasonic transducers; in vivo; Acoustic radiation force; breast cancer; focused ultrasound surgery (FUS); harmonic motion imaging; high-intensity focused ultrasound (HIFU); monitoring; noninvasive estimation; tissue ablation; ultrasound; Animals; Elasticity Imaging Techniques; Feasibility Studies; Female; High-Intensity Focused Ultrasound Ablation; Mammary Neoplasms, Experimental; Mice; Motion; Transducers;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2009.2027423
Filename :
5175456
Link To Document :
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