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The movement patterns and the experiential components of virtual environments.

, , , , and . Int. J. Hum. Comput. Stud., 67 (9): 787-799 (2009)

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Previous exposure to intact speech increases intelligibility of its digitally degraded counterpart as a function of stimulus complexity., , , , , , and . NeuroImage, (2016)Cortical encoding of aperiodic and periodic speech sounds: Evidence for distinct neural populations., , , and . NeuroImage, 55 (3): 1252-1259 (2011)Explaining event-related fields by a mechanistic model encapsulating the anatomical structure of auditory cortex., , , and . Biol. Cybern., 113 (3): 321-345 (2019)The use of stationarity and nonstationarity in the detection and analysis of neural oscillations., , and . NeuroImage, 28 (2): 389-400 (2005)Modeling the categorical perception of speech sounds: a step toward biological plausibility, , and . Cognitive, Affective & Behavioral Neuroscience, 9 (3): 304--313 (September 2009)Memory Stacking in Hierarchical Networks., , and . Neural Comput., 28 (2): 327-353 (2016)Neuromagnetic study on localization of speech sounds., , , , and . INTERSPEECH, page 462-465. ISCA, (2000)Auditory event-related responses are generated independently of ongoing brain activity., , and . NeuroImage, 24 (4): 961-968 (2005)Transient brain responses predict the temporal dynamics of sound detection in humans., , and . NeuroImage, 21 (2): 701-706 (2004)Speech Recognition Based on the Processing Solutions of Auditory Cortex., and . ICANN (2), volume 6792 of Lecture Notes in Computer Science, page 421-428. Springer, (2011)