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Adaptive optimization on ultrasonic transmission tomography-based temperature image for biomedical treatment

Adaptive optimization on ultrasonic transmission tomography-based temperature image for biomedical treatment
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摘要 Hyperthermia has proven to be beneficial to treating superficial malignancies, particularly chest wall recurrences of breast cancer. During hyperthermia, monitoring the time–temperature profiles in the target and surrounding areas is of great significance for the effect of therapy. An ultrasound-based temperature imaging method has advantages over other approaches. When the temperature around the tumor is calculated by using the propagation speed of ultrasound, there always exist overshoot artifacts along the boundary between different tissues. In this paper, we present a new method combined with empirical mode decomposition(EDM), similarity constraint, and continuity constraint to optimize the temperature images. Simulation and phantom experiment results compared with those from our previously proposed method prove that the EMD-based method can build a better temperature field image, which can adaptively yield better temperature images with less computation for assistant medical treatment control. Hyperthermia has proven to be beneficial to treating superficial malignancies, particularly chest wall recurrences of breast cancer. During hyperthermia, monitoring the time–temperature profiles in the target and surrounding areas is of great significance for the effect of therapy. An ultrasound-based temperature imaging method has advantages over other approaches. When the temperature around the tumor is calculated by using the propagation speed of ultrasound, there always exist overshoot artifacts along the boundary between different tissues. In this paper, we present a new method combined with empirical mode decomposition(EDM), similarity constraint, and continuity constraint to optimize the temperature images. Simulation and phantom experiment results compared with those from our previously proposed method prove that the EMD-based method can build a better temperature field image, which can adaptively yield better temperature images with less computation for assistant medical treatment control.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第6期197-202,共6页 中国物理B(英文版)
基金 supported by the DoD/BCRP Idea Award BC095397P1 the National Natural Science Foundation of China(Grant No.61201425) the Priority Academic Program Development of Jiangsu Higher Education Institutions,China
关键词 temperature imaging empirical mode decomposition ultrasound transmission tomography temperature imaging, empirical mode decomposition, ultrasound transmission tomography
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