Effect of Bubble Size on Cavitation Cloud Formation by the Backscattering of Focused Ultrasound from a Bubble Interface in Gelatin
Author:
Affiliation:
1. 大阪府立大学大学院工学研究科機械系専攻
Publisher
The Japanese Society for Multiphase Flow
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jjmf/36/1/36_2022.007/_pdf
Reference13 articles.
1. [1] Bailey, M. R., Khokhlova, V. A., Sapozhnikov, O. A., Kargl, S. G. and Crum, L. A., Physical Mechanisms of the Therapeutic Effect of Ultrasound - (a review), Acoust. Phys., Vol. 49, 369-388 (2003).
2. [2] Kaneko, Y., Maruyama, T., Takegami, K., Watanabe, T., Mitsui, H., Hanajiri, H., Nagawa, H. and Matsumoto, Y., Use of a Microbubble Agent to Increase the Effects of High Intensity Focused Ultrasound on Liver Tissue, Eur. Radiol., Vol. 15, 1415-1420 (2005).
3. [3] Khokhlova, V. A., Bailey, M. R., Reed, J. A., Cunitz, B. W., Kaczkowski, P. J. and Crum, L. A., Effects of Nonlinear Propagation, Cavitation, and Boiling in Lesion Formation by High Intensity Focused Ultrasound in a Gel Phantom, J. Acoust. Soc. Am., Vol. 119, 1834-48 (2006).
4. [4] Asai, A., Okano, H., Yoshizawa, S. and Umemura, S., Analysis of Temperature Rise Induced by High-Intensity Focused Ultrasound in Tissue-Mimicking Gel Considering Cavitation Bubbles, Jpn. J. Appl. Phys., Vol. 52, 07HF02 (2013).
5. [5] Okita, K., Sugiyama, K., Takagi, S. and Matsumoto, Y., Numerical Study on the Effective Heating due to Inertial Cavitation in Microbubble-Enhanced HIFU Therapy, AIP Conference Proceedings, Vol. 1685, 040021 (2015).
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