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Home-Based Therapy After Stroke Using the Hand Spring Operated Movement Enhancer (HandSOME II).

, , , , , , and . Frontiers Neurorobotics, (2021)

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Comparison of Two Series Elastic Actuator Designs Incorporated into a Shoulder Exoskeleton., , and . ICORR, page 317-322. IEEE, (2019)An Elbow Exoskeleton for Upper Limb Rehabilitation With Series Elastic Actuator and Cable-Driven Differential., , and . IEEE Trans. Robotics, 35 (6): 1464-1474 (2019)HandMATE: Wearable Robotic Hand Exoskeleton and Integrated Android App for At Home Stroke Rehabilitation., , , , , , and . EMBC, page 4867-4872. IEEE, (2020)Using the kinect to limit abnormal kinematics and compensation strategies during therapy with end effector robots., , , and . ICORR, page 1-6. IEEE, (2013)Robust Classification of Functional and Nonfunctional Arm Movement after Stroke Using a Single Wrist-Worn Sensor Device., , , , , , and . IEEE BigData, page 5457-5459. IEEE, (2018)Machine Learning Approaches to Predict Functional Upper Extremity Use in Individuals with Stroke., , , , , , , and . IEEE BigData, page 5291-5294. IEEE, (2018)A telerehabilitation platform for home-based automated therapy of arm function., , , , , and . EMBC, page 1819-1822. IEEE, (2011)Human control of a simple two-hand grasp., , and . Biol. Cybern., 67 (6): 553-564 (1992)Quantification of force abnormalities during passive and active-assisted upper-limb reaching movements in post-stroke hemiparesis., , , and . IEEE Trans. Biomed. Eng., 46 (6): 652-662 (1999)Hand rehabilitation after stroke using a wearable, high DOF, spring powered exoskeleton., and . EMBC, page 578-581. IEEE, (2016)