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Roland, Jarod
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2011
Gaona CM
,
Sharma M
,
Freudenberg ZV
,
Breshears J
,
Bundy DT
,
Roland J
, et al.
.
Nonuniform high-gamma (60-500 Hz) power changes dissociate cognitive task and anatomy in human cortex.
J Neurosci [Internet]. 2011;31(6):2091-100.
http://www.ncbi.nlm.nih.gov/pubmed/21307246
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Nonuniform High-Gamma (60-500 Hz) Power Changes Dissociate Cognitive Task and Anatomy in Human Cortex.pdf
(0 bytes)
Leuthardt EC
,
Gaona CM
,
Sharma M
,
Szrama N
,
Roland J
,
Freudenberg ZV
, et al.
.
Using the electrocorticographic speech network to control a brain-computer interface in humans.
J Neural Eng [Internet]. 2011;8(3):036004.
http://www.ncbi.nlm.nih.gov/pubmed/21471638
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Using the Electrocorticographic Speech Network to Control a Brain-Computer Interface in Humans.pdf
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2010
Wu M
,
Wisneski K
,
Schalk G
,
Sharma M
,
Roland J
,
Breshears J
, et al.
.
Electrocorticographic frequency alteration mapping for extraoperative localization of speech cortex.
Neurosurgery [Internet]. 2010;66(2):E407-9.
http://www.ncbi.nlm.nih.gov/pubmed/20087111
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Electrocorticographic Frequency Alteration Mapping for Extraoperative Localization of Speech Cortex.pdf
(0 bytes)
Roland J
,
Brunner P
,
Johnston J
,
Schalk G
,
Leuthardt EC
.
Passive real-time identification of speech and motor cortex during an awake craniotomy.
Epilepsy Behav [Internet]. 2010;18(1-2):123-8.
http://www.ncbi.nlm.nih.gov/pubmed/20478745
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Passive real-time identification of speech and motor cortex during an awake craniotomy.pdf
(0 bytes)
2009
Leuthardt EC
,
Schalk G
,
Roland J
,
Rouse A
,
Moran D
.
Evolution of brain-computer interfaces: going beyond classic motor physiology.
Neurosurg Focus [Internet]. 2009;27(1):E4.
http://www.ncbi.nlm.nih.gov/pubmed/19569892
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Evolution of brain-computer interfaces going beyond classic motor physiology.pdf
(1.29 MB)
Leuthardt EC
,
Freudenberg ZV
,
Bundy DT
,
Roland J
.
Microscale recording from human motor cortex: implications for minimally invasive electrocorticographic brain-computer interfaces.
Neurosurg Focus [Internet]. 2009;27(1).
http://dx.doi.org/10.3171/2009.4.FOCUS0980
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Microscale recording from human motor cortex implications for minimally invasive electrocorticographic brain-computer interfaces.pdf
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