David T. Bundy, Ph.D.
|2008-2015||Biomedical Engineering||Washington University, Saint Louis, St. Louis, MO|
|2015-||Rehabilitation Medicine||University of Kansas Medical Center, Kansas City, KS, United States|
Area:Local Field Potentials, Brain Computer Interface, Electrocorticography
Mean distance: 14.69 (cluster 17)
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|Milighetti S, Sterzi S, Fregni F, et al. (2020) Effects of tDCS on Spontaneous Spike Activity in a Healthy Ambulatory Rat Model. Brain Stimulation|
|Bundy DT, Guggenmos DJ, Murphy MD, et al. (2019) Chronic stability of single-channel neurophysiological correlates of gross and fine reaching movements in the rat. Plos One. 14: e0219034|
|Bundy DT, Nudo RJ. (2019) Preclinical Studies of Neuroplasticity Following Experimental Brain Injury. Stroke. STROKEAHA119023550|
|Murphy MD, Buccelli S, Bornat Y, et al. (2019) Improving an open-source commercial system to reliably perform activity-dependent stimulation. Journal of Neural Engineering|
|Barbay S, Zhang H, Frost SB, et al. (2016) Poster 202 A Translational Model of Traumatic Brain Injury: Motor Recovery from a Focal Controlled Cortical Impact to Primary Motor Cortex. Pm & R : the Journal of Injury, Function, and Rehabilitation. 8: S227|
|Murphy MD, Guggenmos DJ, Bundy DT, et al. (2015) Current Challenges Facing the Translation of Brain Computer Interfaces from Preclinical Trials to Use in Human Patients. Frontiers in Cellular Neuroscience. 9: 497|