Daniel W. Moran
Affiliations: | Biomedical Engineering | Washington University, Saint Louis, St. Louis, MO |
Area:
motor neurophysiology and neuroprostheticsGoogle:
"Daniel Moran"Mean distance: 15.69 (cluster 22) | S | N | B | C | P |
Parents
Sign in to add mentorGary T Yamaguchi | grad student | Arizona State | |
Andrew Schwartz | post-doc | Washington University |
Children
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Publications
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Rosario M, Zhang J, Kaleem MI, et al. (2024) A Method for Quantitative Spatial Analysis of Immunolabeled Fibers at Regenerative Electrode Interfaces. Journal of Neuroscience Methods. 110295 |
Anand S, Cho H, Adamek M, et al. (2023) High gamma coherence between task-responsive sensory-motor cortical regions in a motor reaction-time task. Journal of Neurophysiology |
Chandra NS, McCarron WM, Yan Y, et al. (2021) Sensory Percepts Elicited by Chronic Macro-Sieve Electrode Stimulation of the Rat Sciatic Nerve. Frontiers in Neuroscience. 15: 758427 |
Leuthardt EC, Moran DW, Mullen TR. (2021) Defining Surgical Terminology and Risk for Brain Computer Interface Technologies. Frontiers in Neuroscience. 15: 599549 |
Ray S, Javeed S, Khalifeh JM, et al. (2021) High-Frequency Alternating Current Block Using Macro-Sieve Electrodes: A Pilot Study. Cureus. 13: e13728 |
Heldman DA, Moran DW. (2020) Local field potentials for BCI control. Handbook of Clinical Neurology. 168: 279-288 |
Coker RA, Zellmer ER, Moran DW. (2018) Micro-channel sieve electrode for concurrent bidirectional peripheral nerve interface. Part B: Stimulation. Journal of Neural Engineering |
Coker RA, Zellmer ER, Moran DW. (2018) Micro-channel sieve electrode for concurrent bidirectional peripheral nerve interface. Part A: Recording. Journal of Neural Engineering |
Zellmer ER, MacEwan MR, Moran DW. (2017) Modelling the impact of altered axonal morphometry on the response of regenerative nervous tissue to electrical stimulation through macro-sieve electrodes. Journal of Neural Engineering |
Bundy DT, Souders L, Baranyai K, et al. (2017) Contralesional Brain-Computer Interface Control of a Powered Exoskeleton for Motor Recovery in Chronic Stroke Survivors. Stroke |