Publication | Open Access
Cooperative manipulation and transport of microobjects using multiple helical microcarriers
52
Citations
34
References
2014
Year
Engineered MicrobarsMultiple Helical MicrocarriersNanoroboticsEngineeringSoft RoboticsMicrofabricationAerospace EngineeringSelf-assemblyCooperative Transport StrategyBiomedical DevicesMicroscale SystemBiomedical EngineeringPropulsionMicroactuatorMicrofluidicsCooperative Manipulation
We report a cooperative transport strategy that uses engineered microbars and multiple helical microcarriers. Cooperation of microcarriers generates higher propulsive forces while application of forces at multiple locations results in motion control with multiple degrees of freedom.
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