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Vision Research|October 1, 1994
Motion capture of luminance stimuli by equiluminous color gratings and by attentive trackingJ C Culham, P CavanaghNeuroimage|April 3, 2007
fMRI reveals a preference for near viewing in the human parieto-occipital cortexD J Quinlan, J C CulhamCurrent Opinion in Neurobiology|April 13, 2001
Neuroimaging of cognitive functions in human parietal cortexJ C Culham, N G KanwisherFrontiers in Human Neuroscience|November 6, 2015
Direct comparisons of hand and mouth kinematics during grasping, feeding and fork-feeding actionsD J Quinlan, J C CulhamNeuron|November 24, 2001
Attention response functions: characterizing brain areas using fMRI activation during parametric variations of attentional loadJ C Culham, P Cavanagh, N G KanwisherOptometry and Vision Science : Official Publication of the American Academy of Optometry|October 6, 2001
Aging effects on vernier hyperacuity: a function of oscillation rate but not target contrastD W Kline, J C Culham, P Bartel, et al.Neuron|January 6, 2001
Independent aftereffects of attention and motionJ C Culham, F A Verstraten, H Ashida, et al.Journal of Neurophysiology|September 5, 2008
The human dorsal stream adapts to real actions and 3D shape processing: a functional magnetic resonance imaging studyG Króliczak, T D McAdam, D J Quinlan, et al.Journal of Neurophysiology|January 19, 2007
What does the brain do when you fake it? An FMRI study of pantomimed and real graspingG Króliczak, C Cavina-Pratesi, D A Goodman, et al.Journal of Neurophysiology|November 18, 1998
Cortical fMRI activation produced by attentive tracking of moving targetsJ C Culham, S A Brandt, P Cavanagh, et al.Pageof 2