Simon Leipold
Affiliations: | 2020- | Stanford University, Palo Alto, CA |
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Parents
Sign in to add mentorLutz Jäncke | grad student | 2016-2019 | University of Zurich (UZH) |
Vinod Menon | post-doc | 2020- | Stanford |
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Publications
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Leipold S, Abrams DA, Karraker S, et al. (2022) Aberrant Emotional Prosody Circuitry Predicts Social Communication Impairments in Children With Autism. Biological Psychiatry. Cognitive Neuroscience and Neuroimaging |
Leipold S, Abrams DA, Karraker S, et al. (2022) Neural decoding of emotional prosody in voice-sensitive auditory cortex predicts social communication abilities in children. Cerebral Cortex (New York, N.Y. : 1991) |
Leipold S, Abrams DA, Menon V. (2022) Mothers adapt their voice during children's adolescent development. Scientific Reports. 12: 951 |
Leipold S, Klein C, Jäncke L. (2021) Musical expertise shapes functional and structural brain networks independent of absolute pitch ability. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience |
Greber M, Klein C, Leipold S, et al. (2020) Heterogeneity of EEG resting-state brain networks in absolute pitch. International Journal of Psychophysiology : Official Journal of the International Organization of Psychophysiology |
Brauchli C, Leipold S, Jäncke L. (2019) Diminished large-scale functional brain networks in absolute pitch during the perception of naturalistic music and audiobooks. Neuroimage. 116513 |
Klein C, Leipold S, Ghadri JR, et al. (2019) Takotsubo syndrome: How the broken heart deals with negative emotions. Neuroimage. Clinical. 25: 102124 |
Leipold S, Greber M, Sele S, et al. (2019) Neural patterns reveal single-trial information on absolute pitch and relative pitch perception. Neuroimage. 200: 132-141 |
Leipold S, Brauchli C, Greber M, et al. (2019) Absolute and relative pitch processing in the human brain: neural and behavioral evidence. Brain Structure & Function |
Brauchli C, Leipold S, Jäncke L. (2019) Univariate and multivariate analyses of functional networks in absolute pitch. Neuroimage. 189: 241-247 |