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Eric C. Leuthardt

ResearcherPublications, citations & collaboration network

Eric C. Leuthardt is a researcher indexed in ScholarIQ from OpenAlex & ORCID. ScholarIQ records 402 works, 14,872 citations, an h-index of 66 and an i10-index of 171.

402
Works
14,872
Citations
66
h-index
171
i10-index

How has Eric C. Leuthardt's publication output changed over time?

ScholarIQpublication output · 2004–2017

Output grew0% over the shown period — from 1 works in 2004 to 1 in 2017.

1
1
1
2
1
1
2
1
1
200420052006200720082010201120132017

What are the most-cited papers on Eric C. Leuthardt?

ScholarIQmost cited works
A brain–computer interface using electrocorticographic signals in humans
Eric C. Leuthardt, Gerwin Schalk, Jonathan R. Wolpaw, Jeffrey G. Ojemann, Daniel W. Moran
Journal of Neural Engineering. 20041,197 Citations
Spectral Changes in Cortical Surface Potentials during Motor Movement
Kai J. Miller, Eric C. Leuthardt, Gerwin Schalk, Rajesh P. N. Rao, Nicholas Anderson, Daniel W. Moran, John W. Miller, Jeffrey G. Ojemann
Journal of Neuroscience. 2007776 CitationsOPEN ACCESS
Decoding two-dimensional movement trajectories using electrocorticographic signals in humans
Gerwin Schalk, Jan Kubanek, Kai J. Miller, Nicholas Anderson, Eric C. Leuthardt, Jeffrey G. Ojemann, David D. Limbrick, Daniel W. Moran, Lester A. Gerhardt, Jonathan R. Wolpaw
Journal of Neural Engineering. 2007534 Citations
Two-dimensional movement control using electrocorticographic signals in humans
Gerwin Schalk, Kai J. Miller, Nicholas Anderson, J. Adam Wilson, Matthew D. Smyth, Jeffrey G. Ojemann, Daniel W. Moran, Jonathan R. Wolpaw, Eric C. Leuthardt
Journal of Neural Engineering. 2008489 CitationsOPEN ACCESS
Brain-Computer Interfaces Using Electrocorticographic Signals
Gerwin Schalk, Eric C. Leuthardt
S203619773. 2011432 Citations

Related on ScholarIQ

Washington University in St. Louis
Institution
A brain–computer interface using electrocorticographic signals in humans
Paper
Spectral Changes in Cortical Surface Potentials during Motor Movement
Paper
Decoding two-dimensional movement trajectories using electrocorticographic signals in humans
Paper
Two-dimensional movement control using electrocorticographic signals in humans
Paper
Brain-Computer Interfaces Using Electrocorticographic Signals
Paper
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