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Microfabrication and scale effect studies for a magnetic micromanipulation system.

, and . IROS, page 1754-1759. IEEE, (2002)

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Path planning for 3-D in-hand dexterous micro-manipulation in presence of adhesion forces., , and . CASE, page 424-430. IEEE, (2022)Trajectory Modelling of a Planar Magnetic Cell Micropusher., , and . ROBIO, page 142-147. IEEE Computer Society, (2006)Capillary self-alignment assisted hybrid robotic handling for ultra-thin die stacking., , , , and . ICRA, page 1403-1408. IEEE, (2013)Effect of the Capillary Force on Force Measurements in Submerged Micromanipulations., and . IROS, page 766-771. IEEE, (2006)Robotic micro-assembly of microparts using a piezogripper., and . IROS, page 4042-4047. IEEE, (2008)Planning in-hand dexterous micro-manipulation using 3-D rotations decomposition., , and . CASE, page 2085-2091. IEEE, (2021)Microfabrication and scale effect studies for a magnetic micromanipulation system., and . IROS, page 1754-1759. IEEE, (2002)Control of a particular coarse-fine micro-positioning system based on a magnetic actuation., and . IROS, page 1748-1753. IEEE, (2002)Submerged Robotic Micromanipulation and Dielectrophoretic Micro-object Release., , and . ICARCV, page 1-6. IEEE, (2006)Improvement of Robotic Micromanipulations Using Chemical Functionalisations., , , and . IPAS, volume 315 of IFIP Advances in Information and Communication Technology, page 215-221. Springer, (2010)