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Neuroimage
|
February 12, 2013
Linking human brain local activity fluctuations to structural and functional network architectures
A T Baria, A Mansour, L Huang, et al.
Journal of Cognitive Neuroscience
|
August 10, 2000
The influence of stimulus deviance on electrophysiologic and behavioral responses to novel events
K R Daffner, L F Scinto, V Calvo, et al.
Annals of Neurology
|
January 1, 1986
Slowly progressive aphasia without generalized dementia: studies with positron emission tomography
J B Chawluk, M M Mesulam, H Hurtig, et al.
Annals of Neurology
|
April 1, 1995
Selectively distributed processing of visual object recognition in the temporal and frontal lobes of the human brain
M Seeck, D Schomer, N Mainwaring, et al.
Neurology
|
November 18, 1998
Dopamine agonists reorient visual exploration away from the neglected hemispace
Z Grujic, M Mapstone, D R Gitelman, et al.
Neurology
|
March 12, 2003
Possible association of the tau H1/H1 genotype with primary progressive aphasia
M-J Sobrido, A Abu-Khalil, S Weintraub, et al.
Neuroreport
|
May 14, 1998
Regulation of attention to novel stimuli by frontal lobes: an event-related potential study
K R Daffner, M M Mesulam, L F Scinto, et al.
Brain : a Journal of Neurology
|
April 25, 2000
The central role of the prefrontal cortex in directing attention to novel events
K R Daffner, M M Mesulam, L F Scinto, et al.
Neuropathology and Applied Neurobiology
|
April 22, 2018
Prominent microglial activation in cortical white matter is selectively associated with cortical atrophy in primary progressive aphasia
D T Ohm, G Kim, T Gefen, et al.
Neurology
|
October 1, 1990
Visual neglect during intracarotid amobarbital testing
P A Spiers, D L Schomer, H W Blume, et al.
Page
of 18
Search research articles
Search
Showing results (161-170 of 180) with videos related to
Sort By:
Page
of 18
Neuroimage
|
February 12, 2013
Linking human brain local activity fluctuations to structural and functional network architectures
A T Baria, A Mansour, L Huang, et al.
Journal of Cognitive Neuroscience
|
August 10, 2000
The influence of stimulus deviance on electrophysiologic and behavioral responses to novel events
K R Daffner, L F Scinto, V Calvo, et al.
Annals of Neurology
|
January 1, 1986
Slowly progressive aphasia without generalized dementia: studies with positron emission tomography
J B Chawluk, M M Mesulam, H Hurtig, et al.
Annals of Neurology
|
April 1, 1995
Selectively distributed processing of visual object recognition in the temporal and frontal lobes of the human brain
M Seeck, D Schomer, N Mainwaring, et al.
Neurology
|
November 18, 1998
Dopamine agonists reorient visual exploration away from the neglected hemispace
Z Grujic, M Mapstone, D R Gitelman, et al.
Neurology
|
March 12, 2003
Possible association of the tau H1/H1 genotype with primary progressive aphasia
M-J Sobrido, A Abu-Khalil, S Weintraub, et al.
Neuroreport
|
May 14, 1998
Regulation of attention to novel stimuli by frontal lobes: an event-related potential study
K R Daffner, M M Mesulam, L F Scinto, et al.
Brain : a Journal of Neurology
|
April 25, 2000
The central role of the prefrontal cortex in directing attention to novel events
K R Daffner, M M Mesulam, L F Scinto, et al.
Neuropathology and Applied Neurobiology
|
April 22, 2018
Prominent microglial activation in cortical white matter is selectively associated with cortical atrophy in primary progressive aphasia
D T Ohm, G Kim, T Gefen, et al.
Neurology
|
October 1, 1990
Visual neglect during intracarotid amobarbital testing
P A Spiers, D L Schomer, H W Blume, et al.
Page
of 18