Cortical mapping of gait in humans: a near-infrared spectroscopic topography study I Miyai, HC Tanabe, I Sase, H Eda, I Oda, I Konishi, Y Tsunazawa, ... Neuroimage 14 (5), 1186-1192, 2001 | 948 | 2001 |
Prefrontal and premotor cortices are involved in adapting walking and running speed on the treadmill: an optical imaging study M Suzuki, I Miyai, T Ono, I Oda, I Konishi, T Kochiyama, K Kubota Neuroimage 23 (3), 1020-1026, 2004 | 534 | 2004 |
Treadmill training with body weight support: its effect on Parkinson's disease I Miyai, Y Fujimoto, Y Ueda, H Yamamoto, S Nozaki, T Saito, J Kang Archives of physical medicine and rehabilitation 81 (7), 849-852, 2000 | 464 | 2000 |
Long-term effect of body weight–supported treadmill training in Parkinson's disease: A randomized controlled trial I Miyai, Y Fujimoto, H Yamamoto, Y Ueda, T Saito, S Nozaki, J Kang Archives of physical medicine and rehabilitation 83 (10), 1370-1373, 2002 | 405 | 2002 |
Role of the prefrontal cortex in human balance control M Mihara, I Miyai, M Hatakenaka, K Kubota, S Sakoda Neuroimage 43 (2), 329-336, 2008 | 382 | 2008 |
Gait capacity affects cortical activation patterns related to speed control in the elderly T Harada, I Miyai, M Suzuki, K Kubota Experimental brain research 193, 445-454, 2009 | 323 | 2009 |
Cerebellar ataxia rehabilitation trial in degenerative cerebellar diseases I Miyai, M Ito, N Hattori, M Mihara, M Hatakenaka, H Yagura, G Sobue, ... Neurorehabilitation and neural repair 26 (5), 515-522, 2012 | 310 | 2012 |
Longitudinal optical imaging study for locomotor recovery after stroke I Miyai, H Yagura, M Hatakenaka, I Oda, I Konishi, K Kubota Stroke, 2003 | 310 | 2003 |
Premotor cortex is involved in restoration of gait in stroke I Miyai, H Yagura, I Oda, I Konishi, H Eda, T Suzuki, K Kubota Annals of neurology 52 (2), 188-194, 2002 | 303 | 2002 |
Near-infrared spectroscopy–mediated neurofeedback enhances efficacy of motor imagery–based training in poststroke victims: a pilot study M Mihara, N Hattori, M Hatakenaka, H Yagura, T Kawano, T Hino, I Miyai Stroke 44 (4), 1091-1098, 2013 | 291 | 2013 |
Activities in the frontal cortex and gait performance are modulated by preparation. An fNIRS study M Suzuki, I Miyai, T Ono, K Kubota Neuroimage 39 (2), 600-607, 2008 | 260 | 2008 |
Removal of the skin blood flow artifact in functional near-infrared spectroscopic imaging data through independent component analysis S Kohno, I Miyai, A Seiyama, I Oda, A Ishikawa, S Tsuneishi, T Amita, ... Journal of biomedical optics 12 (6), 062111-062111-9, 2007 | 257 | 2007 |
Results of new policies for inpatient rehabilitation coverage in Japan I Miyai, S Sonoda, S Nagai, Y Takayama, Y Inoue, A Kakehi, M Kurihara, ... Neurorehabilitation and Neural Repair 25 (6), 540-547, 2011 | 251 | 2011 |
Consensus paper: management of degenerative cerebellar disorders W Ilg, AJ Bastian, S Boesch, RG Burciu, P Celnik, J Claaßen, K Feil, ... The Cerebellum 13, 248-268, 2014 | 226 | 2014 |
Neurofeedback using real-time near-infrared spectroscopy enhances motor imagery related cortical activation M Mihara, I Miyai, N Hattori, M Hatakenaka, H Yagura, T Kawano, ... PloS one 7 (3), e32234, 2012 | 204 | 2012 |
Frontal regions involved in learning of motor skill—a functional NIRS study M Hatakenaka, I Miyai, M Mihara, S Sakoda, K Kubota Neuroimage 34 (1), 109-116, 2007 | 173 | 2007 |
Sustained prefrontal activation during ataxic gait: a compensatory mechanism for ataxic stroke? M Mihara, I Miyai, M Hatakenaka, K Kubota, S Sakoda Neuroimage 37 (4), 1338-1345, 2007 | 145 | 2007 |
Cortical changes underlying balance recovery in patients with hemiplegic stroke H Fujimoto, M Mihara, N Hattori, M Hatakenaka, T Kawano, H Yagura, ... Neuroimage 85, 547-554, 2014 | 137 | 2014 |
Middle cerebral artery stroke that includes the premotor cortex reduces mobility outcome I Miyai, T Suzuki, J Kang, K Kubota, BT Volpe Stroke 30 (7), 1380-1383, 1999 | 132 | 1999 |
Effect of body weight support on cortical activation during gait in patients with stroke I Miyai, M Suzuki, M Hatakenaka, K Kubota Experimental brain research 169 (1), 85-91, 2006 | 127 | 2006 |