Upper limb rehabilitation robotics after stroke: a perspective from the University of Padua, Italy.
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Paolo Gallina | Giulio Rosati | Stefano Masiero | Elena Carraro | Claudio Ferraro | Aldo Rossi | P. Gallina | S. Masiero | G. Rosati | A. Rossi | C. Ferraro | E. Carraro
[1] K. Furie,et al. Heart disease and stroke statistics--2007 update: a report from the American Heart Association Statistics Committee and Stroke Statistics Subcommittee. , 2008, Circulation.
[2] T. Platz,et al. Electromechanical and robot-assisted arm training for improving arm function and activities of daily living after stroke. , 2008, The Cochrane database of systematic reviews.
[3] L. Der-Yeghiaian,et al. Robot-based hand motor therapy after stroke. , 2007, Brain : a journal of neurology.
[4] N. Hogan,et al. Robot-aided neurorehabilitation. , 1998, IEEE transactions on rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society.
[5] S. Adamovich,et al. Sensorimotor Training in a Virtual Reality Environment: Does It Improve Functional Recovery Poststroke? , 2006, Neurorehabilitation and neural repair.
[6] Lumy Sawaki,et al. Modulation of human corticomotor excitability by somatosensory input , 2002, The Journal of physiology.
[7] B. Tavolato,et al. Robot-aided intensive training in post-stroke recovery , 2006, Aging clinical and experimental research.
[8] S. Masiero,et al. Robotic-assisted rehabilitation of the upper limb after acute stroke. , 2007, Archives of physical medicine and rehabilitation.
[9] William S. Harwin,et al. Challenges and Opportunities for Robot-Mediated Neurorehabilitation , 2006, Proceedings of the IEEE.
[10] D.J. Reinkensmeyer,et al. Optimizing Compliant, Model-Based Robotic Assistance to Promote Neurorehabilitation , 2008, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[11] H. Woldag,et al. Evidence-based physiotherapeutic concepts for improving arm and hand function in stroke patients , 2002, Journal of Neurology.
[12] W. Rymer,et al. Robot-assisted reaching exercise promotes arm movement recovery in chronic hemiparetic stroke: a randomized controlled pilot study , 2006, Journal of NeuroEngineering and Rehabilitation.
[13] Zhang Ying-yua. A single-blinded multicenter randomized controlled clinical trial of ceftizoxime sodium for injection in the treatment of lower respiratory tract and urine tract infections , 2008 .
[14] M. Casadio,et al. Adaptive robot training in the rehabilitation of incoordination in Multiple Sclerosis: a pilot study , 2007, 2007 IEEE 10th International Conference on Rehabilitation Robotics.
[15] David J. Reinkensmeyer,et al. Compliant Control of Post-Stroke Rehabilitation Robots: Using Movement-Specific Models to Improve Controller Performance , 2008 .
[16] P. Rossini,et al. Integrated technology for evaluation of brain function and neural plasticity. , 2004, Physical medicine and rehabilitation clinics of North America.
[17] H. Feys,et al. Effect of a therapeutic intervention for the hemiplegic upper limb in the acute phase after stroke: a single-blind, randomized, controlled multicenter trial. , 1998, Stroke.
[18] T. Hornby,et al. Metabolic Costs and Muscle Activity Patterns During Robotic- and Therapist-Assisted Treadmill Walking in Individuals With Incomplete Spinal Cord Injury , 2006, Physical Therapy.
[19] C. Braun,et al. Motor learning elicited by voluntary drive. , 2003, Brain : a journal of neurology.
[20] F Chollet,et al. Neural Substrate for the Effects of Passive Training on Sensorimotor Cortical Representation: A Study with Functional Magnetic Resonance Imaging in Healthy Subjects , 2000, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[21] H. Krebs,et al. Effects of Robot-Assisted Therapy on Upper Limb Recovery After Stroke: A Systematic Review , 2008, Neurorehabilitation and neural repair.
[22] L. Tickle-Degnen,et al. A kinematic study of contextual effects on reaching performance in persons with and without stroke: influences of object availability. , 2000, Archives of physical medicine and rehabilitation.
[23] J. Burdick,et al. Effects of consistency vs. variability in robotically controlled training of stepping in adult spinal mice , 2005, 9th International Conference on Rehabilitation Robotics, 2005. ICORR 2005..
[24] K. Furie,et al. Heart disease and stroke statistics--2008 update: a report from the American Heart Association Statistics Committee and Stroke Statistics Subcommittee. , 2007, Circulation.
[25] Steven C Cramer,et al. Robotics, motor learning, and neurologic recovery. , 2004, Annual review of biomedical engineering.
[26] P. Gallina,et al. Design, Implementation and Clinical Tests of a Wire-Based Robot for Neurorehabilitation , 2007, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[27] T. S. Miles,et al. Changes in muscle responses to stimulation of the motor cortex induced by peripheral nerve stimulation in human subjects , 2000, Experimental Brain Research.
[28] Maarten J. IJzerman,et al. Systematic review of the effect of robot-aided therapy on recovery of the hemiparetic arm after stroke. , 2006, Journal of rehabilitation research and development.
[29] P. Williams. Use of intermittent stretch in the prevention of serial sarcomere loss in immobilised muscle. , 1990, Annals of the rheumatic diseases.
[30] Monica A. Perez,et al. Motor skill training induces changes in the excitability of the leg cortical area in healthy humans , 2004, Experimental Brain Research.