Do N1/MMN, P3a, and RON form a strongly coupled chain reflecting the three stages of auditory distraction? J Horváth, I Winkler, A Bendixen Biological psychology 79 (2), 139-147, 2008 | 279 | 2008 |
Newborn infants can organize the auditory world I Winkler, E Kushnerenko, J Horváth, R Čeponienė, V Fellman, ... Proceedings of the National Academy of Sciences 100 (20), 11812-11815, 2003 | 272 | 2003 |
The role of attention in the formation of auditory streams ES Sussman, J Horváth, I Winkler, M Orr Perception & psychophysics 69 (1), 136-152, 2007 | 210 | 2007 |
Selective suppression of self‐initiated sounds in an auditory stream: An ERP study P Baess, J Horváth, T Jacobsen, E Schröger Psychophysiology 48 (9), 1276-1283, 2011 | 208 | 2011 |
MMN or no MMN: no magnitude of deviance effect on the MMN amplitude J Horváth, I Czigler, T Jacobsen, B Maess, E Schröger, I Winkler Psychophysiology 45 (1), 60-69, 2008 | 167 | 2008 |
Preattentive binding of auditory and visual stimulus features I Winkler, I Czigler, E Sussman, J Horváth, L Balázs Journal of cognitive neuroscience 17 (2), 320-339, 2005 | 163 | 2005 |
Simultaneously active pre-attentive representations of local and global rules for sound sequences in the human brain J Horvath, I Czigler, E Sussman, I Winkler Cognitive Brain Research 12 (1), 131-144, 2001 | 150 | 2001 |
Action-related auditory ERP attenuation: Paradigms and hypotheses J Horváth Brain Research 1626, 54-65, 2015 | 131 | 2015 |
Processing acoustic change and novelty in newborn infants E Kushnerenko, I Winkler, J Horváth, R Näätänen, I Pavlov, V Fellman, ... European Journal of Neuroscience 26 (1), 265-274, 2007 | 127 | 2007 |
Age-related differences in distraction and reorientation in an auditory task J Horváth, I Czigler, E Birkás, I Winkler, J Gervai Neurobiology of aging 30 (7), 1157-1172, 2009 | 122 | 2009 |
Pre-attentive auditory processing of lexicality T Jacobsen, J Horváth, E Schröger, S Lattner, A Widmann, I Winkler Brain and Language 88 (1), 54-67, 2004 | 107 | 2004 |
Rapid extraction of auditory feature contingencies A Bendixen, W Prinz, J Horváth, NJ Trujillo-Barreto, E Schröger Neuroimage 41 (3), 1111-1119, 2008 | 106 | 2008 |
Action–sound coincidences suppress evoked responses of the human auditory cortex in EEG and MEG J Horváth, B Maess, P Baess, A Tóth Journal of cognitive neuroscience 24 (9), 1919-1931, 2012 | 87 | 2012 |
Preattentive auditory context effects I Winkler, E Sussman, M Tervaniemi, J Horváth, W Ritter, R Näätänen Cognitive, Affective, & Behavioral Neuroscience 3 (1), 57-77, 2003 | 83 | 2003 |
The development of the perceptual organization of sound by frequency separation in 5–11-year-old children E Sussman, R Wong, J Horvath, I Winkler, W Wang Hearing Research 225 (1-2), 117-127, 2007 | 81 | 2007 |
Familiarity affects the processing of task-irrelevant auditory deviance T Jacobsen, E Schröger, I Winkler, J Horváth Journal of Cognitive Neuroscience 17 (11), 1704-1713, 2005 | 81 | 2005 |
Human auditory cortex tracks task-irrelevant sound sources I Winkler, WA Teder-Sälejärvi, J Horváth, R Näätänen, E Sussman Neuroreport 14 (16), 2053-2056, 2003 | 74 | 2003 |
Event-related potential study to aversive auditory stimuli I Czigler, TJ Cox, K Gyimesi, J Horváth Neuroscience letters 420 (3), 251-256, 2007 | 61 | 2007 |
Preventing distraction: Assessing stimulus-specific and general effects of the predictive cueing of deviant auditory events J Horváth, E Sussman, I Winkler, E Schröger Biological psychology 87 (1), 35-48, 2011 | 59 | 2011 |
Distraction in a continuous-stimulation detection task J Horváth, I Winkler Biological Psychology 83 (3), 229-238, 2010 | 58 | 2010 |