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fMRI Compatible Haptic Interfaces to Investigate Human Motor Control.

, , , , and . ISER, volume 21 of Springer Tracts in Advanced Robotics, page 25-34. Springer, (2004)

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Design and compatibility of a high-performance actuation system for fMRI-based neuroscience studies., , , , , , and . IROS, page 2437-2442. IEEE, (2010)Design and characterization of the ReHapticKnob, a robot for assessment and therapy of hand function., , , and . IROS, page 3074-3080. IEEE, (2011)A Haptic Knob for Rehabilitation of Stroke Patients., , , , , , , and . IROS, page 977-982. IEEE, (2006)Active Mechatronic Interface for Haptic Perception Studies with Functional Magnetic Resonance Imaging: Compatibility and Design Criteria., , , , , , , , and . ICRA, page 3832-3837. IEEE, (2006)A 2-DOF fMRI Compatible Haptic Interface to Investigate the Neural Control of Arm Movements., , , , , , , and . ICRA, page 3825-3831. IEEE, (2006)ReFlex, a haptic wrist interface for motor learning and rehabilitation., , , and . HAPTICS, page 417-424. IEEE Computer Society, (2010)2-DOF fMRI-Compatible Haptic Interface for Bimanual Motor Tasks with Grip/Load Force Measurement., , , , and . The Sense of Touch and its Rendering, 45, (2008)Hybrid Ultrasonic Motor and Electrorheological Clutch System for MR-Compatible Haptic Rendering., , , and . IROS, page 1553-1557. IEEE, (2006)Neuroscience robotics to investigate multisensory integration and bodily awareness., , , , , , and . EMBC, page 8348-8352. IEEE, (2011)fMRI Compatible Haptic Interfaces to Investigate Human Motor Control., , , , and . ISER, volume 21 of Springer Tracts in Advanced Robotics, page 25-34. Springer, (2004)