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Force and Position Control System for Freehand Ultrasound.

, and . IEEE Trans. Robotics, 31 (4): 835-849 (2015)

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Fast low-cost single element ultrasound reflectivity tomography using angular distribution analysis., , , , , and . ISBI, page 1021-1024. IEEE, (2016)Force and Position Control System for Freehand Ultrasound., and . IEEE Trans. Robotics, 31 (4): 835-849 (2015)In-home Health Monitoring using Floor-based Gait Tracking., and . Internet Things, (2022)Computing Speed-of-Sound From Ultrasound: User-Agnostic Recovery and a New Benchmark., , and . IEEE Trans. Biomed. Eng., 71 (4): 1094-1103 (April 2024)A Deep Learning Framework for Single-Sided Sound Speed Inversion in Medical Ultrasound., , and . IEEE Trans. Biomed. Eng., 67 (4): 1142-1151 (2020)Real-Time Blood Pressure Estimation From Force-Measured Ultrasound., , , and . IEEE Trans. Biomed. Eng., 65 (11): 2405-2416 (2018)Motion compensation in a tomographic ultrasound imaging system: Toward volumetric scans of a limb for prosthetic socket design., , , , , , and . EMBC, page 7204-7207. IEEE, (2015)Detecting muscle activation using ultrasound speed of sound inversion with deep learning., , , and . CoRR, (2019)Ergonomic control strategies for a handheld force-controlled ultrasound probe., and . IROS, page 1284-1291. IEEE, (2012)Real-Time Imaging of Invisible Micron-Scale Monolayer Patterns on a Moving Web Using Condensation Figures., , and . IEEE Trans. Ind. Electron., 67 (5): 4077-4087 (2020)