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Positive and Negative Motor Signs of Head Motion in Cerebral Palsy: Assessment of Impairment and Task Performance.

, , , , , , and . IEEE Systems Journal, 10 (3): 967-973 (2016)

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An Inexpensive and Easy to Use Cervical Range of Motion Measurement Solution Using Inertial Sensors., , , , , , and . Sensors, 18 (8): 2582 (2018)A mobile robot controlled by an adaptive inertial interface for children with physical and cognitive disorders., , , and . TePRA, page 151-156. IEEE, (2012)Assistive Robots for Physical and Cognitive Rehabilitation in Cerebral Palsy., , , , , and . Intelligent Assistive Robots, volume 106 of Springer Tracts in Advanced Robotics, Springer, (2015)Human-computer interaction for users with cerebral palsy based on head orientation. Can cursor's movement be modeled by Fitts's law?, , , , and . Int. J. Hum.-Comput. Stud., (2017)Positive and Negative Motor Signs of Head Motion in Cerebral Palsy: Assessment of Impairment and Task Performance., , , , , , and . IEEE Systems Journal, 10 (3): 967-973 (2016)Hardware Accelerator to Compute the Minimum Embedding Dimension of ECG Records., , , , , and . IWBBIO, volume 9656 of Lecture Notes in Computer Science, page 254-265. Springer, (2016)Assessment of the involuntary motion of children with motor impairments to improve the accessibility of an inertial interface., , , and . IDC, page 128-137. ACM, (2010)A Robust Kalman Algorithm to Facilitate Human-Computer Interaction for People with Cerebral Palsy, Using a New Interface Based on Inertial Sensors., , , , and . Sensors, 12 (3): 3049-3067 (2012)Evaluation of Cervical Posture Improvement of Children with Cerebral Palsy After Physical Therapy with a HCI Based on Head Movements and Serious Videogames., , , , , , and . IWBBIO, volume 9656 of Lecture Notes in Computer Science, page 495-504. Springer, (2016)CPWalker: Robotic platform for gait rehabilitation in patients with Cerebral Palsy., , , , , , , , , and 2 other author(s). ICRA, page 3736-3741. IEEE, (2016)