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Comparison of Dynamic Models for Non-Contact Micromanipulation Based on Dielectrophoretic Actuation.

, , and . IROS, page 4869-4874. IEEE, (2018)

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Behavior of a Magnetic Manipulator of Biological Objects., and . ICRA, page 3199-3204. IEEE, (2002)Editorial: Multi-scale manipulation toward robotic manufacturing technologies., and . Intelligent Service Robotics, 8 (3): 127 (2015)Robotic submerged microhandling controlled by pH swithching., , , and . IROS, page 1855-1860. IEEE, (2009)Kinematics parameters estimation for an AFM/robot integrated micro-force measurement system., , and . IROS, page 6143-6148. IEEE, (2010)Modeling of electrostatic forces induced by chemical surface functionalisation for microrobotics applications., , , , and . IROS, page 2065-2070. IEEE, (2013)Comparison of Dynamic Models for Non-Contact Micromanipulation Based on Dielectrophoretic Actuation., , and . IROS, page 4869-4874. IEEE, (2018)CATS: Collection and Analysis of Tweets Made Simple., , and . CSCW Companion, page 41-44. ACM, (2016)A Localization Method for Untethered Small-Scale Robots Using Electrical Impedance Tomography, , , , , , and . IEEE ASME transactions on mechatronics, (2022)Comparison between micro-objects manipulations in dry and liquid mediums., , and . CIRA, page 707-712. IEEE, (2005)A Submerged Freeze Microgripper for Micromanipulations., , and . ICRA, page 826-831. IEEE, (2007)