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Modeling Electromagnetic Navigation Systems for Medical Applications using Random Forests and Artificial Neural Networks., , , , , and . CoRR, (2019)Modeling assembled-MEMS microrobots for wireless magnetic control., , , , , and . ICRA, page 874-879. IEEE, (2008)Teleoperated micromanipulation within a VRML environment using Java., , and . IROS, page 1747-1752. IEEE, (1998)Shared control of a magnetic microcatheter for vitreoretinal targeted drug delivery., , and . ICRA, page 4843-4848. IEEE, (2017)Self-folding mobile microrobots for biomedical applications., , , , , , and . ICRA, page 3777-3782. IEEE, (2014)Movement of artificial bacterial flagella in heterogeneous viscous environments at the microscale., , , and . IROS, page 2553-2558. IEEE, (2012)Guidance of magnetic intraocular microrobots by active defocused tracking., , and . IROS, page 3309-3314. IEEE, (2004)Dual-axis Cellular Force Microscope for mechanical characterization of living plant cells., , , , , , and . CASE, page 942-947. IEEE, (2016)High-order boundary integral equation solution of high frequency wave scattering from obstacles in an unbounded linearly stratified medium., , and . J. Comput. Phys., (2015)Ultra flexible SiGe/Si/Cr nanosprings., , , , , , and . Microelectron. J., 39 (3-4): 478-481 (2008)