生物医学中的光声成像
高强度聚焦超声
超声波
光声多普勒效应
生物医学工程
光声效应
聚焦超声
材料科学
体内
医学物理学
放射科
医学
光学
生物
物理
生物技术
作者
Jeesu Kim,Wonseok Choi,Eun-Yeong Park,Young-nam Kang,Ki Jong Lee,Hyung Ham Kim,Won Jong Kim,Chulhong Kim
出处
期刊:IEEE Transactions on Biomedical Engineering
[Institute of Electrical and Electronics Engineers]
日期:2019-03-11
卷期号:66 (12): 3330-3338
被引量:61
标识
DOI:10.1109/tbme.2019.2904087
摘要
High-intensity focused ultrasound (HIFU) treatment is a promising non-invasive method for killing or destroying the diseased tissues by locally delivering thermal and mechanical energy without damaging surrounding normal tissues. In HIFU, measuring the temperature at the site of delivery is important for improving therapeutic efficacy, controlling safety, and appropriately planning a treatment. Several researchers have proposed photoacoustic thermometry for monitoring HIFU treatment, but they had many limitations, including the inability to image while the HIFU is on, inability to provide two-dimensional monitoring, and the inability to be used clinically. In this paper, we propose a novel integrated real-time photoacoustic thermometry system for HIFU treatment monitoring. The system provides ultrasound B-mode imaging, photoacoustic structural imaging, and photoacoustic thermometry during HIFU treatment in real-time for both in vitro and in vivo environments, without any interference from the strong therapeutic HIFU waves. We have successfully tested the real-time photoacoustic thermometry by investigating the relationship between the photoacoustic amplitude and the measured temperature with in vitro phantoms and in vivo tumor-bearing mice. The results show the feasibility of a real-time photoacoustic thermometry system for safe and effective monitoring of HIFU treatment.
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