Upload Records Snowball Search Search OpenAlex
About the database ScholarIQanswers from OpenAlex & ORCID
How has Bradley Voytek's publication output changed over time?
ScholarIQpublication output · 2010–2026
Output grew0% over the shown period — from 1 works in 2010 to 1 in 2026.
1
2
2
1
2
2
1
2010201520172019202020212026
What are the most-cited papers on Bradley Voytek?
ScholarIQmost cited works
Parameterizing neural power spectra into periodic and aperiodic components
Thomas Donoghue, Matar Haller, Erik Peterson, Paroma Varma, Priyadarshini Sebastian, Richard Gao, Torben Noto, Antonio H. Lara, Joni D. Wallis, Robert T. Knight, Avgusta Y. Shestyuk, Bradley Voytek
S2298632. 20202,442 CitationsOPEN ACCESS
Inferring synaptic excitation/inhibition balance from field potentials
Richard Gao, Erik Peterson, Bradley Voytek
NeuroImage. 20171,121 Citations
Complex Oscillatory Waves Emerging from Cortical Organoids Model Early Human Brain Network Development
Cleber A. Trujillo, Richard Gao, Priscilla D. Negraes, Jing Gu, Justin Buchanan, Sebastian Preißl, Allen Wang, Wei Wu, Gabriel G. Haddad, Isaac A. Chaim, Alain Domissy, Matthieu Vandenberghe, Anna Devor, G Yeo, Bradley Voytek, Alysson R. Muotri
S128124174. 2019968 CitationsOPEN ACCESS
Age-Related Changes in 1/<i>f</i>Neural Electrophysiological Noise
Bradley Voytek, Mark Kramer, John Case, Kyle Q. Lepage, Zechari Ryan Tempesta, Robert T. Knight, Adam Gazzaley
Journal of Neuroscience. 2015884 CitationsOPEN ACCESS
Dynamic Network Communication as a Unifying Neural Basis for Cognition, Development, Aging, and Disease
Bradley Voytek, Robert T. Knight
S205482884. 2015627 CitationsOPEN ACCESS
Related on ScholarIQ
Haliç University
Institution
Parameterizing neural power spectra into periodic and aperiodic components
Paper
Inferring synaptic excitation/inhibition balance from field potentials
Paper
Complex Oscillatory Waves Emerging from Cortical Organoids Model Early Human Brain Network Development
Paper
Age-Related Changes in 1/<i>f</i>Neural Electrophysiological Noise
Paper
Dynamic Network Communication as a Unifying Neural Basis for Cognition, Development, Aging, and Disease
Paper