JOURNAL ARTICLE

High-intensity focused ultrasound beam path visualization using ultrasound imaging

Jae Hee SongJin Ho ChangYang Mo Yoo

Year: 2020 Journal:   The Journal of the Acoustical Society of Korea Vol: 39 (1)Pages: 16-23   Publisher: The Acoustical Society of Korea

Abstract

In High-Intensity Focused Ultrasound (HIFU) treatment, effective localization of HIFU focus is important for developing a safe treatment plan. While Magnetic Resonance Imaging guided HIFU (MRIgHIFU) can visualize the ultrasound path during the treatment for localizing HIFU focus, it is challenging in ultrasound imaging guided HIFU (USIgHIFU). In the present study, a real-time ultrasound beam visualization technique capable of localizing HIFU focus is presented for USIgHIFU. In the proposed method, a short pulse, with the same center frequency of an imaging ultrasound transducer below the regulated acoustic intensity (i.e., Ispta < 720 mW/cm(2)), was transmitted through a HIFU transducer whereupon backscattered signals were received by the imaging transducer. To visualize the HIFU beam path, the backscattered signals underwent dynamic receive focusing and subsequent echo processing. From in vitro experiments with bovine serum albumin gel phantoms, the HIFU beam path was clearly depicted with low acoustic intensity (i.e., Ispta of 94.8 mW/cm(2)) and the HIFU focus was successfully localized before any damages were produced. This result indicates that the proposed ultrasound beam path visualization method can be used for localizing the HIFU focus in real time while minimizing unwanted tissue damage in USIgHIFU treatment.

Keywords:
High-intensity focused ultrasound Transducer Ultrasound Visualization Focus (optics) Materials science Biomedical engineering Acoustics Medical physics Optics Computer science Medicine Physics Artificial intelligence

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Citation History

Topics

Ultrasound and Hyperthermia Applications
Physical Sciences →  Engineering →  Biomedical Engineering
Advanced MRI Techniques and Applications
Health Sciences →  Medicine →  Radiology, Nuclear Medicine and Imaging
Advanced Radiotherapy Techniques
Physical Sciences →  Physics and Astronomy →  Radiation

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