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| Content Provider | IEEE Xplore Digital Library |
|---|---|
| Author | Tingbo Fan Zhenbo Liu Dong Zhang Mengxing Tang |
| Copyright Year | 1964 |
| Abstract | Lesion formation and temperature distribution induced by high-intensity focused ultrasound (HIFU) were investigated both numerically and experimentally via two energy-delivering strategies, i.e., sequential discrete and continuous scanning modes. Simulations were presented based on the combination of Khokhlov-Zabolotskaya-Kuznetsov (KZK) equation and bioheat equation. Measurements were performed on tissue-mimicking phantoms sonicated by a 1.12-MHz single-element focused transducer working at an acoustic power of 75 W. Both the simulated and experimental results show that, in the sequential discrete mode, obvious saw-tooth-like contours could be observed for the peak temperature distribution and the lesion boundaries, with the increasing interval space between two adjacent exposure points. In the continuous scanning mode, more uniform peak temperature distributions and lesion boundaries would be produced, and the peak temperature values would decrease significantly with the increasing scanning speed. In addition, compared to the sequential discrete mode, the continuous scanning mode could achieve higher treatment efficiency (lesion area generated per second) with a lower peak temperature. The present studies suggest that the peak temperature and tissue lesion resulting from the HIFU exposure could be controlled by adjusting the transducer scanning speed, which is important for improving the HIFU treatment efficiency. |
| Sponsorship | IEEE Engineering in Medicine and Biology Society |
| Page Count | 7 |
| File Size | 736062 |
| Starting Page | 763 |
| Ending Page | 769 |
| File Format | |
| ISSN | 00189294 |
| Volume Number | 60 |
| Issue Number | 3 |
| Language | English |
| Publisher | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
| Publisher Date | 2013-01-01 |
| Publisher Place | U.S.A. |
| Access Restriction | One Nation One Subscription (ONOS) |
| Rights Holder | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
| Subject Keyword | Lesions Temperature distribution Temperature measurement Acoustics Ultrasonic imaging Transducers Mathematical model temperature High-intensity focused ultrasound (HIFU) lesion scanning strategy |
| Content Type | Text |
| Resource Type | Article |
| Subject | Biomedical Engineering |
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