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Validation of Noninvasive Ultrasound Temperature Measurement System Through Experiments Using Resonant Cavity Applicator

机译:通过使用谐振腔涂抹器的实验验证非侵入性超声测量系统

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We developed a resonant cavity applicator for noninvasive deep hyperthermia treatment of osteoarthritis. In previous studies, we confirmed its viability by heating agar phantoms and conducting computer simulations. To evaluate the heating performance of this system on human subjects, it is necessary to develop a new noninvasive temperature measurement system. In this study, we developed a new temperature measurement system utilizing ultrasound imaging techniques. After heating an agar phantom with our resonant cavity applicator, temperature measurements from both our custom-made noninvasive ultrasonic thermometer and an optical fiber thermometer were collected and compared. Both temperature distributions showed a reliable trend, with heat energy concentrated at the center of the agar phantom. Average error rates were less than 13% for temperatures. The results of this study describe the viability of the temperature measurement system and the resonant cavity applicator for clinical applications.
机译:我们开发了一个共振腔涂抹器,用于骨关节炎的非侵入性深热性治疗。在以前的研究中,我们通过加热琼脂幽灵和进行计算机模拟来确认其可行性。为了评估该系统对人类受试者的加热性能,有必要开发一种新的非侵入性温度测量系统。在这项研究中,我们开发了一种利用超声成像技术的新型温度测量系统。通过我们的谐振腔涂抹器加热琼脂幻影,从而收集来自我们定制的非侵入式超声波温度计和光纤温度计的温度测量并进行比较。两个温度分布显示了一种可靠的趋势,热能集中在琼脂幻影的中心。温度的平均误差率小于13%。该研究的结果描述了温度测量系统的可行性和用于临床应用的谐振腔涂敷器。

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