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Compressive Video Recovery Using Block Match Multi-Frame Motion Estimation Based on Single Pixel Cameras.

, , , , and . Sensors, 16 (3): 318 (2016)

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Compressive Video Recovery Using Block Match Multi-Frame Motion Estimation Based on Single Pixel Cameras., , , , and . Sensors, 16 (3): 318 (2016)Micro fixture enabled in-situ imaging and manipulation of cell membrane protein., , , , , and . NEMS, page 165-168. IEEE, (2010)Augmented Reality for Nano Manipulation., , , and . Handbook of Augmented Reality, Springer, (2011)Investigations of bio markers for human lymphoblastoid cells using Atomic Force Microscopy., , , , , , and . NEMS, page 129-132. IEEE, (2010)Image reconstruction of compressive sensing using digital signal processing (DSP)., , , , and . ROBIO, page 384-389. IEEE, (2013)Automated Nanomanufacturing System to Assemble Carbon Nanotube Based Devices., , , , , , and . Int. J. Robotics Res., 28 (4): 523-536 (2009)Dynamic gripping force estimation and reconstruction in EMG-based human-machine interaction., and . Biomed. Signal Process. Control., 80 (Part): 104216 (2023)Locomotion Design of In-pipe Spraying Robot with Multiple Modules for Trenchless Rehabilitation of Underground Pipe., , , , , , , and . ROBIO, page 1568-1573. IEEE, (2022)Mutation analysis models for visual servoing in nanomanipulations., , , and . CDC/ECC, page 5683-5688. IEEE, (2011)Real-time Stereoscopic Display of Atomic Force Microscopy Images for Nano Robotic Manipulation., , , , , , and . NEMS, page 66-69. IEEE, (2023)