Nathan Weisz

INSERM U821, Bron, Auvergne-Rhône-Alpes, France 
Auditory Neuroscience, Tinnitus, Attention
"Nathan Weisz"
Mean distance: 15.94 (cluster 23)
Cross-listing: CSD Tree

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Hauswald A, Benz KR, Hartmann T, et al. (2024) Carrier-frequency specific omission-related neural activity in ordered sound sequences is independent of omission-predictability. The European Journal of Neuroscience
Gehmacher Q, Schubert J, Schmidt F, et al. (2024) Eye movements track prioritized auditory features in selective attention to natural speech. Nature Communications. 15: 3692
Reisinger L, Demarchi G, Weisz N. (2023) Eavesdropping on Tinnitus Using MEG: Lessons Learned and Future Perspectives. Journal of the Association For Research in Otolaryngology : Jaro
Berto M, Ricciardi E, Pietrini P, et al. (2023) Distinguishing Fine Structure and Summary Representation of Sound Textures from Neural Activity. Eneuro. 10
Weise A, Hartmann T, Parmentier F, et al. (2023) Involuntary shifts of spatial attention contribute to distraction-Evidence from oscillatory alpha power and reaction time data. Psychophysiology. e14353
Köhler MHA, Weisz N. (2022) Cochlear Theta Activity Oscillates in Phase Opposition during Interaural Attention. Journal of Cognitive Neuroscience. 1-15
Popov T, Gips B, Weisz N, et al. (2022) Brain areas associated with visual spatial attention display topographic organization during auditory spatial attention. Cerebral Cortex (New York, N.Y. : 1991)
Weisz N, Keil A. (2022) Introduction to the special issue of human oscillatory brain activity: Methods, models, and mechanisms. Psychophysiology. 59: e14038
Keil A, Bernat EM, Cohen MX, et al. (2022) Recommendations and publication guidelines for studies using frequency domain and time-frequency domain analyses of neural time series. Psychophysiology. 59: e14052
Suess N, Hartmann T, Weisz N. (2022) Corrigendum to 'Differential attention-dependent adjustment of frequency, power and phase in primary sensory and frontoparietal areas' [Cortex (2021) 179-193]. Cortex; a Journal Devoted to the Study of the Nervous System and Behavior. 150: 47
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