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Robotic Cell Injection System With Position and Force Control: Toward Automatic Batch Biomanipulation.

, , , and . IEEE Trans. Robotics, 25 (3): 727-737 (2009)

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Integrated vision and force control in suspended cell injection system: Towards automatic batch biomanipulation., , , and . ICRA, page 3413-3418. IEEE, (2008)Determine Discounting Coefficient in Data Fusion Based on Fuzzy ART Neural Network., and . ISNN (1), volume 3971 of Lecture Notes in Computer Science, page 1286-1292. Springer, (2006)High-Throughput Single Cell Trapping and Patterning Using a Sandwiched Microfluidic Chip., , and . ROBIO, page 1508-1513. IEEE, (2018)A vision-based position control methodology to drive mobile robots towards target positions., , , and . ROBIO, page 369-374. IEEE, (2005)Rendezvous of wheeled mobile robots using bearings-only or range-only measurements., and . ROBIO, page 256-261. IEEE, (2013)Dynamics analysis and closed-loop control of biological cells in transportation using robotic manipulation system with optical tweezers., , and . CASE, page 240-245. IEEE, (2010)Dynamic trapping and manipulation of biological cells with optical tweezers., , , and . Autom., 49 (6): 1614-1625 (2013)Enclosing a target by nonholonomic mobile robots with bearing-only measurements., , and . Autom., (2015)An approach to quantized consensus of continuous-time linear multi-agent systems., , , and . Autom., (2018)Distributed control for uniform circumnavigation of ring-coupled unicycles., , , and . Autom., (2015)