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/ Public / Visiome 2004 / Tools & Techniques / Analysis / Neural Signal Analysis / Reverse Correlation   
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icon_papar A subspace reverse-correlation technique for the study of visual neurons. 
Ringach DL , Sapiro G , Shapley R
Vision Res 1997 ;37 (17) :2455-64 [PMID: 9381680]
icon_papar Analysis of sensory coding with complex stimuli. 
Touryan J , Dan Y
Curr Opin Neurobiol 2001 ;11 (4) :443-8 [PMID: 11502390]
icon_papar Analysis of sensory coding with complex stimuli. 
Touryan J , Dan Y
Curr Opin Neurobiol 2001 ;11 (4) :443-8 [PMID: 11502390]
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 Coding of border ownership in monkey visual cortex. 
Zhou H , Friedman HS , von der Heydt R
J Neurosci 2000 ;20 (17) :6594-611 [PMID: 10964965]
icon_papar Construction of complex receptive fields in cat primary visual cortex. 
Martinez LM , Alonso JM
Neuron 2001 ;32 (3) :515-25 [PMID: 11709161]
icon_papar Development of spatiotemporal receptive fields of simple cells: I. Model formulation. 
Wimbauer S , Wenisch OG , Miller KD , van Hemmen JL
Biol Cybern 1997 ;77 (6) :453-61 [PMID: 9433756]
icon_papar Dynamics of orientation tuning in macaque primary visual cortex. 
Ringach DL , Hawken MJ , Shapley R
Nature 1997 ;387 (6630) :281-4 [PMID: 9153392]
icon_papar Dynamics of orientation tuning in macaque v1: the role of global and tuned suppression. 
Ringach DL , Hawken MJ , Shapley R
J Neurophysiol 2003 ;90 (1) :342-52 [PMID: 12611936]
icon_papar Dynamics of spatial frequency tuning in macaque V1. 
Bredfeldt CE , Ringach DL
J Neurosci 2002 ;22 (5) :1976-84 [PMID: 11880528]
icon_papar Efficient coding of natural scenes in the lateral geniculate nucleus: experimental test of a computational theory. 
Dan Y , Atick JJ , Reid RC
J Neurosci 1996 ;16 (10) :3351-62 [PMID: 8627371]
icon_papar Efficient coding of natural scenes in the lateral geniculate nucleus: experimental test of a computational theory. 
Dan Y , Atick JJ , Reid RC
J Neurosci 1996 ;16 (10) :3351-62 [PMID: 8627371]
icon_papar Encoding of binocular disparity by simple cells in the cat's visual cortex. 
Ohzawa I , DeAngelis GC , Freeman RD
J Neurophysiol 1996 ;75 (5) :1779-805 [PMID: 8734580]
icon_papar Feature article: the structure and function of dynamic cortical and thalamic receptive fields. 
Ghazanfar AA , Nicolelis MA
Cereb Cortex 2001 ;11 (3) :183-93 [PMID: 11230091]
icon_papar Full identification of a linear-nonlinear system via cross-correlation analysis. 
Nykamp DQ , Ringach DL
J Vis 2002 ;2 (1) :1-11 [PMID: 12678593]
icon_papar Functional micro-organization of primary visual cortex: receptive field analysis of nearby neurons. 
DeAngelis GC , Ghose GM , Ohzawa I , Freeman RD
J Neurosci 1999 ;19 (10) :4046-64 [PMID: 10234033]
icon_papar Imaging visual function with the multifocal m-sequence technique. 
Sutter EE
Vision Res 2001 ;41 (10) :1241-1255 [PMID: 11322969]
icon_papar Isolation of relevant visual features from random stimuli for cortical complex cells. 
Touryan J , Lau B , Dan Y
J Neurosci 2002 ;22 (24) :10811-8 [PMID: 12486174]
icon_papar Neural mechanisms of orientation selectivity in the visual cortex. 
Ferster D , Miller KD
Annu Rev Neurosci 2000 ;23 :441-71 [PMID: 10845071]
icon_papar Predictions of a recurrent model of orientation selectivity. 
Carandini M , Ringach DL
Vision Res 1997 ;37 (21) :3061-71 [PMID: 9425519]
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