Modular Ankle Robotics Training in Early Subacute Stroke
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Hermano Igo Krebs | Anindo Roy | H. Krebs | L. Forrester | R. Macko | A. Roy | Amanda Krywonis | Glenn Kehs | Richard F Macko | Larry W Forrester | Amanda Krywonis | Glenn Kehs
[1] Anindo Roy,et al. Short-term ankle motor performance with ankle robotics training in chronic hemiparetic stroke. , 2011, Journal of rehabilitation research and development.
[2] Vincent S. Huang,et al. Robotic neurorehabilitation: a computational motor learning perspective , 2009, Journal of NeuroEngineering and Rehabilitation.
[3] T. Demott,et al. Enhanced Gait-Related Improvements After Therapist- Versus Robotic-Assisted Locomotor Training in Subjects With Chronic Stroke: A Randomized Controlled Study , 2008, Stroke.
[4] A. Mirelman,et al. Effects of Training With a Robot-Virtual Reality System Compared With a Robot Alone on the Gait of Individuals After Stroke , 2009, Stroke.
[5] T. Murphy,et al. Plasticity during stroke recovery: from synapse to behaviour , 2009, Nature Reviews Neuroscience.
[6] Ichiro Miyai,et al. Premotor cortex is involved in restoration of gait in stroke , 2002, Annals of neurology.
[7] L. Cohen,et al. Effects of non-invasive cortical stimulation on skilled motor function in chronic stroke. , 2005, Brain : a journal of neurology.
[8] C. Winstein,et al. Determining the Optimal Challenge Point for Motor Skill Learning in Adults With Moderately Severe Parkinson's Disease , 2008, Neurorehabilitation and neural repair.
[9] E. Roth,et al. Development of an intelligent stretching device for ankle joints with contracture/spasticity , 2001, 2001 Conference Proceedings of the 23rd Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[10] F E Zajac,et al. Human standing posture: multi-joint movement strategies based on biomechanical constraints. , 1993, Progress in brain research.
[11] Mark W Rogers,et al. Age-dependent differences in lateral balance recovery through protective stepping. , 2005, Clinical biomechanics.
[12] Judith E. Deutsch,et al. A Stewart Platform-Based System for Ankle Telerehabilitation , 2001, Auton. Robots.
[13] S. Hesse,et al. A mechanized gait trainer for restoration of gait. , 2000, Journal of rehabilitation research and development.
[14] Timothy D. Lee,et al. Motor Control and Learning: A Behavioral Emphasis , 1982 .
[15] H. Herr,et al. Adaptive control of a variable-impedance ankle-foot orthosis to assist drop-foot gait , 2004, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[16] Daniel F Hanley,et al. Effects of treadmill exercise on transcranial magnetic stimulation-induced excitability to quadriceps after stroke. , 2006, Archives of physical medicine and rehabilitation.
[17] Mark W Rogers,et al. Lateral Stability and Falls in Older People , 2003, Exercise and sport sciences reviews.
[18] Marko Munih,et al. Evaluation of upper extremity robot-assistances in subacute and chronic stroke subjects , 2010, Journal of NeuroEngineering and Rehabilitation.
[19] Gottfried Schlaug,et al. Contralateral and ipsilateral motor effects after transcranial direct current stimulation , 2006, Neuroreport.
[20] M Hallett,et al. Modulation of practice-dependent plasticity in human motor cortex. , 2001, Brain : a journal of neurology.
[21] C. Burgar,et al. MIME robotic device for upper-limb neurorehabilitation in subacute stroke subjects: A follow-up study. , 2006, Journal of rehabilitation research and development.
[22] Hermano Igo Krebs,et al. Ankle Training With a Robotic Device Improves Hemiparetic Gait After a Stroke , 2011, Neurorehabilitation and neural repair.
[23] L. Cohen,et al. Influence of interhemispheric interactions on motor function in chronic stroke , 2004, Annals of neurology.
[24] Michael Lars Palmer,et al. Sagittal plane characterization of normal human ankle function across a range of walking gait speeds , 2002 .
[25] A.D. Kuo,et al. An optimal control model for analyzing human postural balance , 1995, IEEE Transactions on Biomedical Engineering.
[26] Chitralakshmi K. Balasubramanian,et al. Anterior-Posterior Ground Reaction Forces as a Measure of Paretic Leg Contribution in Hemiparetic Walking , 2006, Stroke.
[27] 賢二 鈴木. 慢性副鼻腔炎に対するrandomized controlled study , 2002 .
[28] Heinz W. Schmidt. HapticWalker-A novel haptic device for walking simulation , 2004 .
[29] R. Riener,et al. Virtual reality to control active participation in a subacute stroke patient during robot-assisted gait training , 2011, 2011 IEEE International Conference on Rehabilitation Robotics.
[30] W. J. Powers,et al. Very Early Constraint-Induced Movement during Stroke Rehabilitation (VECTORS) , 2009, Neurology.
[31] Grant D. Huang,et al. Robot-assisted therapy for long-term upper-limb impairment after stroke. , 2010, The New England journal of medicine.
[32] J. Liepert,et al. Treatment-induced cortical reorganization after stroke in humans. , 2000, Stroke.
[33] R. Fitzpatrick,et al. Thresholds for inducing protective stepping responses to external perturbations of human standing. , 2003, Journal of neurophysiology.
[34] J. Krakauer,et al. Getting Neurorehabilitation Right , 2012, Neurorehabilitation and neural repair.
[35] T. Schallert,et al. Use-Dependent Exaggeration of Neuronal Injury after Unilateral Sensorimotor Cortex Lesions , 1996, The Journal of Neuroscience.
[36] G. Yavuzer,et al. Mirror therapy enhances lower-extremity motor recovery and motor functioning after stroke: a randomized controlled trial. , 2007, Archives of physical medicine and rehabilitation.
[37] A. Luft,et al. Treadmill Exercise Activates Subcortical Neural Networks and Improves Walking After Stroke: A Randomized Controlled Trial , 2008, Stroke.
[38] Gottfried Schlaug,et al. Dual-hemisphere tDCS facilitates greater improvements for healthy subjects' non-dominant hand compared to uni-hemisphere stimulation , 2008, BMC Neuroscience.
[39] J. Hidler,et al. Multicenter Randomized Clinical Trial Evaluating the Effectiveness of the Lokomat in Subacute Stroke , 2009, Neurorehabilitation and neural repair.
[40] B. Johansson,et al. Brain plasticity and stroke rehabilitation , 2008 .
[41] Roger P. Woods,et al. Ankle dorsiflexion as an fMRI paradigm to assay motor control for walking during rehabilitation , 2004, NeuroImage.
[42] M. Merzenich,et al. Neurophysiological correlates of hand preference in primary motor cortex of adult squirrel monkeys , 1992, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[43] Hermano Igo Krebs,et al. Robot-Aided Neurorehabilitation: A Novel Robot for Ankle Rehabilitation , 2009, IEEE Transactions on Robotics.
[44] P. Gatev,et al. Feedforward ankle strategy of balance during quiet stance in adults , 1999, The Journal of physiology.
[45] H. van der Kooij,et al. Design and Evaluation of the LOPES Exoskeleton Robot for Interactive Gait Rehabilitation , 2007, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[46] I. Schwartz,et al. The Effectiveness of Locomotor Therapy Using Robotic‐Assisted Gait Training in Subacute Stroke Patients: A Randomized Controlled Trial , 2009, PM & R : the journal of injury, function, and rehabilitation.
[47] L. Richards,et al. Comprehensive Overview of Nursing and Interdisciplinary Rehabilitation Care of the Stroke Patient: A Scientific Statement From the American Heart Association , 2010, Stroke.
[48] I. Módy,et al. Reducing excessive GABA-mediated tonic inhibition promotes functional recovery after stroke. , 2010, Nature.
[49] A. Mayr,et al. Prospective, Blinded, Randomized Crossover Study of Gait Rehabilitation in Stroke Patients Using the Lokomat Gait Orthosis , 2007, Neurorehabilitation and neural repair.
[50] Heidi Johansen-Berg,et al. Brain Activity Changes Associated With Treadmill Training After Stroke , 2009, Stroke.
[51] A. Sanabria,et al. Randomized controlled trial. , 2005, World journal of surgery.
[52] M. Zigmond,et al. Forced Nonuse in Unilateral Parkinsonian Rats Exacerbates Injury , 2002, The Journal of Neuroscience.
[53] Thomas G Sugar,et al. Design of a robotic gait trainer using spring over muscle actuators for ankle stroke rehabilitation. , 2005, Journal of biomechanical engineering.
[54] Daniel P. Ferris,et al. An ankle-foot orthosis powered by artificial pneumatic muscles. , 2005, Journal of applied biomechanics.
[55] B. Johansson. Brain plasticity and stroke rehabilitation. The Willis lecture. , 2000, Stroke.