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Eberhard E. Fetz

Physiology and Biophysics University of Washington, Seattle, Seattle, WA 
Motor system
"Eberhard Fetz"
Mean distance: 12.42 (cluster 22)
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Lansdell B, Milovanovic I, Mellema C, et al. (2019) Reconfiguring motor circuits for a joint manual and BCI task. Ieee Transactions On Neural Systems and Rehabilitation Engineering : a Publication of the Ieee Engineering in Medicine and Biology Society
Zanos S, Rembado I, Chen D, et al. (2018) Phase-Locked Stimulation during Cortical Beta Oscillations Produces Bidirectional Synaptic Plasticity in Awake Monkeys. Current Biology : Cb
Libey T, Fetz EE. (2017) Open-Source, Low Cost, Free-Behavior Monitoring, and Reward System for Neuroscience Research in Non-human Primates. Frontiers in Neuroscience. 11: 265
Rembado I, Zanos S, Fetz EE. (2017) Cycle-Triggered Cortical Stimulation during Slow Wave Sleep Facilitates Learning a BMI Task: A Case Report in a Non-Human Primate. Frontiers in Behavioral Neuroscience. 11: 59
Lajoie G, Krouchev NI, Kalaska JF, et al. (2017) Correlation-based model of artificially induced plasticity in motor cortex by a bidirectional brain-computer interface. Plos Computational Biology. 13: e1005343
Seeman SC, Mogen BJ, Fetz EE, et al. (2017) Paired stimulation for spike-timing dependent plasticity in primate sensorimotor cortex. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Eaton RW, Libey T, Fetz EE. (2016) Operant conditioning of neural activity in freely behaving monkeys with intracranial reinforcement. Journal of Neurophysiology. jn.00423.2016
Wander JD, Sarma D, Johnson LA, et al. (2016) Cortico-Cortical Interactions during Acquisition and Use of a Neuroprosthetic Skill. Plos Computational Biology. 12: e1004931
Smith WA, Mogen BJ, Fetz EE, et al. (2016) Exploiting Electrocorticographic Spectral Characteristics for Optimized Signal Chain Design: A 1.08 μW Analog Front End With Reduced ADC Resolution Requirements. Ieee Transactions On Biomedical Circuits and Systems
Milovanovic I, Robinson R, Fetz EE, et al. (2015) Simultaneous and independent control of a brain-computer interface and contralateral limb movement. Brain Computer Interfaces (Abingdon, England). 2: 174-185
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