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T G Weyand

Showing results (11-20 of 21) with videos related to

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Visual Neuroscience|February 11, 1998
Thalamic control of cat lateral suprasylvian visual area: relation to patchy association projections from area 18C Lee, T G Weyand, J G Malpeli
Journal of Neuroscience Methods|August 1, 1992
A new method of mounting and directing chronically implanted microdrivesJ G Malpeli, T G Weyand, R LaClair
Journal of Neurophysiology|May 1, 1991
Area 18 corticotectal cells: response properties and identification of sustaining geniculate inputsT G Weyand, J G Malpeli, C Lee
Visual Neuroscience|February 11, 1998
Thalamic control of cat area-18 supragranular layers: simple cells, complex cells, and cells projecting to the lateral suprasylvian visual areaC Lee, T G Weyand, J G Malpeli
The Journal of Comparative Neurology|February 18, 1999
Widespread distribution of visual responsiveness in frontal, prefrontal, and prelimbic cortical areas of the cat: an electrophysiologic investigationT G Weyand, B V Updyke, A C Gafka
Journal of Neurophysiology|October 1, 1986
Cat area 17. I. Pattern of thalamic control of cortical layersJ G Malpeli, C Lee, H D Schwark, et al.
Journal of Neurophysiology|October 1, 1986
Cat area 17. II. Response properties of infragranular layer neurons in the absence of supragranular layer activityH D Schwark, J G Malpeli, T G Weyand, et al.
Journal of Neurophysiology|October 1, 1986
Cat area 17. IV. Two types of corticotectal cells defined by controlling geniculate inputsT G Weyand, J G Malpeli, C Lee, et al.
Journal of Neurophysiology|November 1, 1984
Cat medial interlaminar nucleus: retinotopy, relation to tapetum and implications for scotopic visionC Lee, J G Malpeli, H D Schwark, et al.
Journal of Neurophysiology|October 1, 1986
Cat area 17. III. Response properties and orientation anisotropies of corticotectal cellsT G Weyand, J G Malpeli, C Lee, et al.
Pageof 3

Showing results (11-20 of 21) with videos related to

Sort By:
Pageof 3
Visual Neuroscience|February 11, 1998
Thalamic control of cat lateral suprasylvian visual area: relation to patchy association projections from area 18C Lee, T G Weyand, J G Malpeli
Journal of Neuroscience Methods|August 1, 1992
A new method of mounting and directing chronically implanted microdrivesJ G Malpeli, T G Weyand, R LaClair
Journal of Neurophysiology|May 1, 1991
Area 18 corticotectal cells: response properties and identification of sustaining geniculate inputsT G Weyand, J G Malpeli, C Lee
Visual Neuroscience|February 11, 1998
Thalamic control of cat area-18 supragranular layers: simple cells, complex cells, and cells projecting to the lateral suprasylvian visual areaC Lee, T G Weyand, J G Malpeli
The Journal of Comparative Neurology|February 18, 1999
Widespread distribution of visual responsiveness in frontal, prefrontal, and prelimbic cortical areas of the cat: an electrophysiologic investigationT G Weyand, B V Updyke, A C Gafka
Journal of Neurophysiology|October 1, 1986
Cat area 17. I. Pattern of thalamic control of cortical layersJ G Malpeli, C Lee, H D Schwark, et al.
Journal of Neurophysiology|October 1, 1986
Cat area 17. II. Response properties of infragranular layer neurons in the absence of supragranular layer activityH D Schwark, J G Malpeli, T G Weyand, et al.
Journal of Neurophysiology|October 1, 1986
Cat area 17. IV. Two types of corticotectal cells defined by controlling geniculate inputsT G Weyand, J G Malpeli, C Lee, et al.
Journal of Neurophysiology|November 1, 1984
Cat medial interlaminar nucleus: retinotopy, relation to tapetum and implications for scotopic visionC Lee, J G Malpeli, H D Schwark, et al.
Journal of Neurophysiology|October 1, 1986
Cat area 17. III. Response properties and orientation anisotropies of corticotectal cellsT G Weyand, J G Malpeli, C Lee, et al.
Pageof 3