Farhan Abdurrehman Khawaja
Affiliations: | Montreal Neurological Institute, McGill University, Montréal, Québec, Canada |
Area:
Visual neurophysiologyGoogle:
"Farhan Khawaja"Mean distance: 13.94 (cluster 17) | S | N | B | C | P |
Parents
Sign in to add mentorChristopher C. Pack | grad student | Montreal Neurological Institute, McGill University | |
Angel Alonso | grad student | 2004-2005 | Montreal Neurological Institute, McGill University |
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Publications
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Cui Y, Liu LD, Khawaja FA, et al. (2013) Diverse suppressive influences in area MT and selectivity to complex motion features. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 16715-28 |
Khawaja FA, Liu LD, Pack CC. (2013) Responses of MST neurons to plaid stimuli. Journal of Neurophysiology. 110: 63-74 |
Mineault PJ, Khawaja FA, Butts DA, et al. (2012) Hierarchical processing of complex motion along the primate dorsal visual pathway. Proceedings of the National Academy of Sciences of the United States of America. 109: E972-80 |
Khawaja FA, Tsui JMG, Pack CC. (2010) Pattern motion selectivity of local field potentials in macaque visual cortex Journal of Vision. 9: 740-740 |
Churan J, Khawaja FA, Tsui JM, et al. (2010) Neuronal and psychophysical responses to brief motion stimuli Journal of Vision. 9: 670-670 |
Churan J, Khawaja F, Tsui J, et al. (2010) Effects of onset-transients on the perception of visual motion Journal of Vision. 8: 389-389 |
Khawaja F, Pack C. (2010) Responses of MT neurons to type II plaid stimuli Journal of Vision. 10: 932-932 |
Khawaja FA, Tsui JM, Pack CC. (2009) Pattern motion selectivity of spiking outputs and local field potentials in macaque visual cortex. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 29: 13702-9 |
Churan J, Khawaja FA, Tsui JM, et al. (2008) Brief motion stimuli preferentially activate surround-suppressed neurons in macaque visual area MT. Current Biology : Cb. 18: R1051-2 |
Khawaja FA, Alonso AA, Bourque CW. (2007) Ca(2+)-dependent K(+) currents and spike-frequency adaptation in medial entorhinal cortex layer II stellate cells. Hippocampus. 17: 1143-8 |