Yan T. Wong

Affiliations: 
New York University, New York, NY, United States 
Area:
electrophysiology
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"Yan Wong"
Mean distance: 14.71 (cluster 29)
 
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Publications

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Yoo PE, Oxley TJ, Hagan MA, et al. (2020) Distinct Neural Correlates Underlie Inhibitory Mechanisms of Motor Inhibition and Motor Imagery Restraint. Frontiers in Behavioral Neuroscience. 14: 77
Shewcraft RA, Dean HL, Fabiszak MM, et al. (2020) Excitatory-inhibitory responses shape coherent neuronal dynamics driven by optogenetic stimulation in the primate brain. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Bighamian R, Wong YT, Pesaran B, et al. (2019) Sparse model-based estimation of functional dependence in high-dimensional field and spike multiscale networks. Journal of Neural Engineering
Hadjidimitrakis K, Bakola S, Wong YT, et al. (2019) Mixed Spatial and Movement Representations in the Primate Posterior Parietal Cortex. Frontiers in Neural Circuits. 13: 15
Opie NL, John SE, Rind GS, et al. (2018) Focal stimulation of the sheep motor cortex with a chronically implanted minimally invasive electrode array mounted on an endovascular stent. Nature Biomedical Engineering. 2: 907-914
Hsieh HL, Wong YT, Pesaran B, et al. (2018) Multiscale Modeling and Decoding Algorithms for Spike-Field Activity. Journal of Neural Engineering
John SE, Opie NL, Wong YT, et al. (2018) Author Correction: Signal quality of simultaneously recorded endovascular, subdural and epidural signals are comparable. Scientific Reports. 8: 17469
Yoo PE, Oxley TJ, John SE, et al. (2018) Feasibility of identifying the ideal locations for motor intention decoding using unimodal and multimodal classification at 7T-fMRI. Scientific Reports. 8: 15556
John SE, Opie NL, Wong YT, et al. (2018) Signal quality of simultaneously recorded endovascular, subdural and epidural signals are comparable. Scientific Reports. 8: 8427
Yoo PE, Hagan MA, John SE, et al. (2018) Spatially dynamic recurrent information flow across long-range dorsal motor network encodes selective motor goals. Human Brain Mapping
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