Nakagami分布
热电偶
热疗
温度测量
微波食品加热
生物医学工程
成像体模
大气温度范围
材料科学
工作(物理)
生物系统
医学
物理
统计
数学
核医学
热力学
复合材料
生物
衰退
内科学
解码方法
量子力学
作者
Zhengkai Liu,Ying Du,Xainwei Meng,Chenlu Li,Liyong Zhou
摘要
Objective The purpose of this study is to accurately monitor temperature during microwave hyperthermia. We propose a temperature estimation model BP‐Nakagami based on neural network for Nakagami distribution. Methods In this work, we designed the microwave hyperthermia experiment of fresh ex vivo pork tissue and phantom, collected ultrasonic backscatter data at different temperatures, modeled these data using Nakagami distribution, and calculated Nakagami distribution parameter m . A neural network model was built to train the relationship between Nakagami distribution parameter m and temperature, and a BP‐Nakagami temperature model with good fitting was obtained. The temperature model is used to draw the two‐dimensional temperature distribution map of biological tissues in microwave hyperthermia. Finally, the temperature estimated by the model is compared with the temperature measured by thermocouples. Results The error between the temperature estimated by the temperature model and the temperature measured by the thermocouple is within 1°C in the range of 25°C–50°C for ex vivo pork tissue, and the error between the temperature estimated by the temperature model and the temperature measured by the thermocouple is within 0.5°C in the range of 25°C–50°C for phantom. Conclusions The results show that the temperature estimation model proposed by us is an effective model for monitoring the internal temperature change of biological tissues.
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