Mechanism of Kinect-based virtual reality training for motor functional recovery of upper limbs after subacute stroke
暂无分享,去创建一个
Le Li | Shaozhen Chen | Yurong Mao | Le Li | Dongfeng Huang | Qiang Lin | Ryan S. Cates | Shufeng Zhou | Yurong Mao | Dongfeng Huang | Shaozhen Chen | Xiao Bao | Y. Qiu | Xiao Bao | Qiang Lin | Yunhai Qiu | Shufeng Zhou | X. Bao
[1] Simon B. Eickhoff,et al. Dynamic causal modeling of cortical activity from the acute to the chronic stage after stroke , 2011, NeuroImage.
[2] Alvaro Pascual-Leone,et al. Imaging correlates of motor recovery from cerebral infarction and their physiological significance in well-recovered patients , 2007, NeuroImage.
[3] C. McKevitt,et al. Relationships between long-term stroke disability, handicap and health-related quality of life. , 2006, Age and ageing.
[4] Alvaro Uribe-Quevedo,et al. Kinect-Based Posture Tracking for Correcting Positions during Exercise , 2013, MMVR.
[5] Steven C Cramer,et al. Mapping clinically relevant plasticity after stroke , 2000, Neuropharmacology.
[6] Peter Levine,et al. Modified Constraint-Induced Therapy in Acute Stroke: A Randomized Controlled Pilot Study , 2005, Neurorehabilitation and neural repair.
[7] C. Calautti,et al. Functional Neuroimaging Studies of Motor Recovery After Stroke in Adults: A Review , 2003, Stroke.
[8] Ching-Tien Shih,et al. A new limb movement detector enabling people with multiple disabilities to control environmental stimulation through limb swing with a gyration air mouse. , 2010, Research in developmental disabilities.
[9] W. McIlroy,et al. Effectiveness of Virtual Reality Using Wii Gaming Technology in Stroke Rehabilitation: A Pilot Randomized Clinical Trial and Proof of Principle , 2010, Stroke.
[10] M. Lotze,et al. Non-effective increase of fMRI-activation for motor performance in elder individuals , 2011, Behavioural Brain Research.
[11] Yao-Jen Chang,et al. Comparing picture and video prompting in autonomous indoor wayfinding for individuals with cognitive impairments , 2010, Personal and Ubiquitous Computing.
[12] G. Thielman,et al. Rehabilitation of the Upper Extremity after Stroke: A Case Series Evaluating REO Therapy and an Auditory Sensor Feedback for Trunk Control , 2012, Stroke research and treatment.
[13] D. Felce,et al. Quality of life: its definition and measurement. , 1995, Research in developmental disabilities.
[14] Yao-Jen Chang,et al. A Kinect-based system for physical rehabilitation: a pilot study for young adults with motor disabilities. , 2011, Research in developmental disabilities.
[15] Albert A. Rizzo,et al. Development and evaluation of low cost game-based balance rehabilitation tool using the microsoft kinect sensor , 2011, 2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[16] P. Tonin,et al. Motor Learning Principles for Rehabilitation: A Pilot Randomized Controlled Study in Poststroke Patients , 2010, Neurorehabilitation and neural repair.
[17] James M. Keller,et al. Resident identification using kinect depth image data and fuzzy clustering techniques , 2012, 2012 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[18] J. Broderick,et al. The Unchanging Incidence and Case-Fatality of Stroke in the 1990s: A Population-Based Study , 2006, Stroke.
[19] Sarah J. Housman,et al. A Randomized Controlled Trial of Gravity-Supported, Computer-Enhanced Arm Exercise for Individuals With Severe Hemiparesis , 2009, Neurorehabilitation and neural repair.
[20] G. Gelderblom,et al. Non-use of provided assistive technology devices, a literature overview , 2004 .
[21] Edward T. Bullmore,et al. The relationship between motor deficit and hemisphere activation balance after stroke: A 3T fMRI study , 2007, NeuroImage.
[22] Laurence Dricot,et al. Brain activations underlying different patterns of performance improvement during early motor skill learning , 2012, NeuroImage.
[23] François Chollet,et al. A longitudinal fMRI study: in recovering and then in clinically stable sub-cortical stroke patients , 2004, NeuroImage.
[24] Min Ho Chun,et al. The Effect of Virtual Reality Training on Unilateral Spatial Neglect in Stroke Patients , 2011, Annals of rehabilitation medicine.
[25] André J. Szameitat,et al. Cortical activation during executed, imagined, observed, and passive wrist movements in healthy volunteers and stroke patients , 2012, NeuroImage.
[26] R. Schalock,et al. The relationship between quality of life and self-determination: an international study. , 2005, Journal of intellectual disability research : JIDR.
[27] Willem M. Otte,et al. Functional MRI and Diffusion Tensor Imaging of Brain Reorganization After Experimental Stroke , 2012, Translational Stroke Research.
[28] S. Small,et al. Lateralization of motor circuits and handedness during finger movements , 2001, European journal of neurology.
[29] S. Small,et al. Functional Lateralization of the Human Premotor Cortex during Sequential Movements , 2002, Brain and Cognition.
[30] L. Chou,et al. Effects of primary caregiver participation in vestibular rehabilitation for unilateral neglect patients with right hemispheric stroke: a randomized controlled trial , 2013, Neuropsychiatric disease and treatment.
[31] Carolee J. Winstein,et al. Evolution of fMRI Activation in the Perilesional Primary Motor Cortex and Cerebellum With Rehabilitation Training-Related Motor Gains After Stroke: A Pilot Study , 2007, Neurorehabilitation and neural repair.
[32] François Chollet,et al. Prognostic value of FMRI in recovery of hand function in subcortical stroke patients. , 2007, Cerebral cortex.
[33] Richard S. J. Frackowiak,et al. Neural correlates of outcome after stroke: a cross-sectional fMRI study. , 2003, Brain : a journal of neurology.
[34] Yao-Jen Chang,et al. Autonomous indoor wayfinding for individuals with cognitive impairments , 2010, Journal of NeuroEngineering and Rehabilitation.
[35] Yao-Jen Chang,et al. INDOOR WAYFINDING BASED ON WIRELESS SENSOR NETWORKS FOR INDIVIDUALS WITH MULTIPLE SPECIAL NEEDS , 2010, Cybern. Syst..
[36] Gereon R Fink,et al. The role of the contralesional motor cortex for motor recovery in the early days after stroke assessed with longitudinal FMRI. , 2011, Cerebral cortex.
[37] J. Konczak,et al. Recovery of Upper Limb Function After Cerebellar Stroke: Lesion Symptom Mapping and Arm Kinematics , 2010, Stroke.