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Visual Pathway Visual Pathway
20 Indexes / 107 Items
Perception/Cognition Perception/Cognition
17 Indexes / 140 Items
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icon_papar A comparison of koniocellular, magnocellular and parvocellular receptive field properties in the lateral geniculate nucleus of the owl monkey 
Xu X , Ichida JM , Allison JD , Boyd JD , Bonds AB
J Physiol 2001 ;531 :203-18 [PMID: 11179404]
icon_url A Dictionary of Terminology in Vision Research 
Link to http://cns-web.bu.edu/pub/laliden/WWW/Visionary/Visionary.html
icon_papar A look into the cockpit of the fly: visual orientation, algorithms, and identified neurons. 
Egelhaaf M , Borst A
J Neurosci 1993 ;13 (11) :4563-74 [PMID: 8229185]
icon_papar A neural network for visual pattern recognition 
Fukushima Kunihiko
IEEE Computer 1988 ;21 (3) :65-75
icon_papar A processing stream in mammalian visual cortex neurons for non-Fourier responses. 
Zhou YX , Baker CL Jr
Science 1993 ;261 (5117) :98-101 [PMID: 8316862]
icon_papar Adaptation-induced plasticity of orientation tuning in adult visual cortex. 
Dragoi V , Sharma J , Sur M
Neuron 2000 ;28 (1) :287-98 [PMID: 11087001]
icon_papar An evolutionary scaling law for the primate visual system and its basis in cortical function. 
Stevens CF
Nature 2001 ;411 (6834) :193-5 [PMID: 11346795]
icon_papar An intracellular recording study of stimulus-specific response properties 
Sato H , Daw NW , Fox K
Brain Res 1991 ;544 (1) :156-61 [PMID: 1855136]
icon_papar Analysis of the process of visual pattern recognition by the neocognitron 
Fukushima Kunihiko
Neural Networks 1989 ;2 (6) :413-420
icon_papar Anatomical and physiological asymmetries related to visual areas V3 and VP 
Burkhalter A , Felleman DJ , Newsome WT , Van Essen DC
Vision Res 1986 ;26 (1) :63-80 [PMID: 3716214]
icon_papar Asymmetric suppression outside the classical receptive field of the visual 
Walker GA , Ohzawa I , Freeman RD
J Neurosci 1999 ;19 (23) :10536-53 [PMID: 10575050]
icon_papar Beyond the classical receptive field in the visual cortex. 
Freeman RD , Ohzawa I , Walker G
Prog Brain Res 2001 ;134 :157-70 [PMID: 11702541]
icon_papar Binocular interactions and spatial disparity sensitivity in the superior colliculus of the Siamese cat. 
Bacon BA , Lepore F , Guillemot JP
Exp Brain Res 1999 ;124 (2) :181-92 [PMID: 9928841]
icon_papar Bulk membrane retrieval in the synaptic terminal of retinal bipolar cells. 
Holt M , Cooke A , Wu MM , Lagnado L
J Neurosci 2003 ;23 (4) :1329-1339 [PMID: 12598621]
icon_papar Ca(2+)-dependent Cl- current at the presynaptic terminals of goldfish retinal bipolar cells. 
Okada T , Horiguchi H , Tachibana M
Neurosci Res 1995 ;23 (3) :297-303 [PMID: 8545078]
icon_papar Ca2+ -activated K+ current at presynaptic terminals of goldfish retinal bipolar cells. 
Sakaba T , Ishikane H , Tachibana M
Neurosci Res 1997 ;27 (3) :219-228 [PMID: 9129180]
icon_papar Ca2+ regulation in the presynaptic terminals of goldfish retinal bipolar cells. 
Kobayashi K , Tachibana M
J Physiol 1995 ;483 :79-94 [PMID: 7539842]
icon_papar Calcium action potentials in retinal bipolar neurons. 
Zenisek D , Matthews G
Vis Neurosci 1998 ;15 (1) :69-75 [PMID: 9456506]
icon_papar Calcium and protein kinase C regulate the actin cytoskeleton in the synaptic terminal of retinal bipolar cells. 
Job C , Lagnado L
J Cell Biol 1998 ;143 (6) :1661-1672 [PMID: 9852158]
icon_papar Calcium influx selects the fast mode of endocytosis in the synaptic terminal of retinal bipolar cells. 
Neves G , Gomis A , Lagnado L
Proc Natl Acad Sci U S A 2001 ;98 (26) :15282-15287 [PMID: 11734626]
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