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A parameterized family of anatomically accurate human upper-body musculoskeletal models for dynamic simulation & control.

, , and . Humanoids, page 587-594. IEEE, (2016)

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Using haptics to probe human contact control strategies for six degree-of-freedom tasks., , , and . HAPTICS, page 93-95. IEEE, (2014)A parameterized family of anatomically accurate human upper-body musculoskeletal models for dynamic simulation & control., , and . Humanoids, page 587-594. IEEE, (2016)Special issue on selected and extended papers from SIMPAR 2016., , , , and . Adv. Robotics, 31 (22): 1157-1158 (2017)Haptic fMRI: A novel five DOF haptic interface for multi-axis motor neuroscience experiments., , , , , and . WHC, page 13-18. IEEE, (2017)Experimental Analysis of Human Control Strategies in Contact Manipulation Tasks., , and . ISER, volume 1 of Springer Proceedings in Advanced Robotics, page 275-286. Springer, (2016)Models, analyses, tools, and experiments to characterize human motor control and coordination.. Stanford University, USA, (2017)Controlling articulated robots in task-space with spiking silicon neurons., , , , and . BioRob, page 181-186. IEEE, (2014)Using Haptic fMRI to Enable Interactive Motor Neuroimaging Experiments., , and . ISER, volume 109 of Springer Tracts in Advanced Robotics, page 89-103. Springer, (2014)From Bot to Bot: Using a Chat Bot to Synthesize Robot Motion., , and . AAAI Fall Symposia, AAAI Press, (2016)Haptic fMRI: Combining functional neuroimaging with haptics for studying the brain's motor control representation., , , , and . EMBC, page 4137-4142. IEEE, (2013)