Supplemental material, MyCI_paper_v2_Supp_Material for Myoelectric Computer Interface Training for Reducing Co-Activation and Enhancing Arm Movement in Chronic Stroke Survivors: A Randomized Trial by Emily M. Mugler, Goran Tomic, Aparna Singh, Saad Hameed, Eric W. Lindberg, Jon Gaide, Murad Alqadi, Elizabeth Robinson, Katherine Dalzotto, Camila Limoli, Tyler Jacobson, Jungwha Lee and Marc W. Slutzky in Neurorehabilitation and Neural Repair</p
Supplemental material, Supplementary_Figure_1 for Learning a Bimanual Cooperative Skill in Chronic S...
Supplemental material, Supplementary_Figure_3 for Learning a Bimanual Cooperative Skill in Chronic S...
Supplemental material, Supplementary_Figure_4 for Learning a Bimanual Cooperative Skill in Chronic S...
Abnormal muscle co-activation has been identified as a significant factor behind upper extremity imp...
Supplemental material, Supplemental_File for Electrical Somatosensory Stimulation in Early Rehabilit...
Abnormal co-activation, the incapacity to independently activate one’s muscles, has been identified ...
Supplemental material, Supplementary_Material for Brain-Machine Interface in Chronic Stroke: Randomi...
Abnormal co-activation patterns of arm muscles is a substantial cause of impaired arm function after...
Supplemental material, Supplemental_Material for The effectiveness of somatosensory retraining for i...
Supplemental material, Supplementary_Table_2 for Learning a Bimanual Cooperative Skill in Chronic St...
Supplemental material, Supplemental_Material for Standard early rehabilitation and lower limb transc...
Supplemental material, Supplementary_Table_1 for Learning a Bimanual Cooperative Skill in Chronic St...
<p>Supplemental material, SUPPLEMENTARY_MATERIAL for Determining the feasibility and preliminary eff...
Supplemental material, Supplementary_Figure_2 for Learning a Bimanual Cooperative Skill in Chronic S...
<p>Supplemental material, Supplemental_Materials for Eye Movements Interfere With Limb Motor Control...
Supplemental material, Supplementary_Figure_1 for Learning a Bimanual Cooperative Skill in Chronic S...
Supplemental material, Supplementary_Figure_3 for Learning a Bimanual Cooperative Skill in Chronic S...
Supplemental material, Supplementary_Figure_4 for Learning a Bimanual Cooperative Skill in Chronic S...
Abnormal muscle co-activation has been identified as a significant factor behind upper extremity imp...
Supplemental material, Supplemental_File for Electrical Somatosensory Stimulation in Early Rehabilit...
Abnormal co-activation, the incapacity to independently activate one’s muscles, has been identified ...
Supplemental material, Supplementary_Material for Brain-Machine Interface in Chronic Stroke: Randomi...
Abnormal co-activation patterns of arm muscles is a substantial cause of impaired arm function after...
Supplemental material, Supplemental_Material for The effectiveness of somatosensory retraining for i...
Supplemental material, Supplementary_Table_2 for Learning a Bimanual Cooperative Skill in Chronic St...
Supplemental material, Supplemental_Material for Standard early rehabilitation and lower limb transc...
Supplemental material, Supplementary_Table_1 for Learning a Bimanual Cooperative Skill in Chronic St...
<p>Supplemental material, SUPPLEMENTARY_MATERIAL for Determining the feasibility and preliminary eff...
Supplemental material, Supplementary_Figure_2 for Learning a Bimanual Cooperative Skill in Chronic S...
<p>Supplemental material, Supplemental_Materials for Eye Movements Interfere With Limb Motor Control...
Supplemental material, Supplementary_Figure_1 for Learning a Bimanual Cooperative Skill in Chronic S...
Supplemental material, Supplementary_Figure_3 for Learning a Bimanual Cooperative Skill in Chronic S...
Supplemental material, Supplementary_Figure_4 for Learning a Bimanual Cooperative Skill in Chronic S...