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A comparative study for robot assisted vitreoretinal surgery: Micron vs. the Steady-Hand Robot.

, , , , and . ICRA, page 4832-4837. IEEE, (2013)

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Intraoperative Visualization of Anatomical Targets in Retinal Surgery., , , , , , and . WACV, page 1-6. IEEE Computer Society, (2008)A sub-millimetric, 0.25 mN resolution fully integrated fiber-optic force-sensing tool for retinal microsurgery., , , , , , , and . Int. J. Comput. Assist. Radiol. Surg., 4 (4): 383-390 (2009)Development and preliminary data of novel integrated optical micro-force sensing tools for retinal microsurgery., , , , , and . ICRA, page 1897-1902. IEEE, (2009)Active Multispectral Illumination and Image Fusion for Retinal Microsurgery., , , , , , , , , and . IPCAI, volume 6135 of Lecture Notes in Computer Science, page 12-22. Springer, (2010)Micro-force Sensing in Robot Assisted Membrane Peeling for Vitreoretinal Surgery., , , , , and . MICCAI (3), volume 6363 of Lecture Notes in Computer Science, page 303-310. Springer, (2010)Cooperative Robot Assistant for Retinal Microsurgery., , , , , , , and . MICCAI (2), volume 5242 of Lecture Notes in Computer Science, page 543-550. Springer, (2008)Human eye phantom for developing computer and robot-assisted epiretinal membrane peeling., , , , , , , and . EMBC, page 6864-6867. IEEE, (2014)Development and Application of a New Steady-Hand Manipulator for Retinal Surgery., , , , , , , and . ICRA, page 623-629. IEEE, (2007)A multi-function force sensing instrument for variable admittance robot control in retinal microsurgery., , , , , and . ICRA, page 1411-1418. IEEE, (2014)Comparison of Baseline Tremor under Various Microsurgical Conditions., , , , , and . SMC, page 1482-1487. IEEE, (2013)