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Real-Time Temperature Imaging Using Ultrasonic Change In Backscattered Energy, Weiyuan Zhao
Real-Time Temperature Imaging Using Ultrasonic Change In Backscattered Energy, Weiyuan Zhao
McKelvey School of Engineering Theses & Dissertations
Thermal therapy from low-temperature cryosurgery to high-temperature ablation of tumors and unwanted electrical pathways has gained increased attention. Temperature imaging (TI) from magnetic resonance studies is the de facto standard for volumetric estimation of temperature. Ultrasound has the advantages of being cheap, portable, non-invasive and non-ionizing. Our group showed in predictions for single scatterers, simulations of scatterer populations and measurements in 1D, 2D and 3D, that CBE changed monotonically with temperature with 1oC accuracy. An obstacle to clinical application of CBE TI is estimation of temperature in real time, which is limited by time for motion compensation (MC). …