Angela D. Friederici, Prof. Dr.
Affiliations: | Department of Neuropsychology | Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Sachsen, Germany |
Area:
Cognitive NeuroscienceWebsite:
https://www.cbs.mpg.de/employees/friedericiGoogle:
"Angela Friederici"Mean distance: 13.36 (cluster 23) | S | N | B | C | P |
Cross-listing: LinguisTree
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Sign in to add mentorWillem J.M. Levelt | research scientist | Max Planck Institute for Human Cognitive and Brain Sciences |
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Publications
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Gallardo G, Eichner C, Sherwood CC, et al. (2023) Morphological evolution of language-relevant brain areas. Plos Biology. 21: e3002266 |
Friederici AD. (2023) Evolutionary neuroanatomical expansion of Broca's region serving a human-specific function. Trends in Neurosciences |
Liu Y, Gao C, Wang P, et al. (2023) Exploring the neurobiology of Merge at a basic level: insights from a novel artificial grammar paradigm. Frontiers in Psychology. 14: 1151518 |
Gallardo G, Eichner C, Sherwood CC, et al. (2023) Uncovering the Morphological Evolution of Language-Relevant Brain Areas. Biorxiv : the Preprint Server For Biology |
Wei X, Adamson H, Schwendemann M, et al. (2023) Native language differences in the structural connectome of the human brain. Neuroimage. 270: 119955 |
Schaadt G, Werwach A, Obrig H, et al. (2023) Maturation of consonant perception, but not vowel perception, predicts lexical skills at 12 months. Child Development |
Krause CD, Fengler A, Pino D, et al. (2022) The role of left temporo-parietal and inferior frontal cortex in comprehending syntactically complex sentences: A brain stimulation study. Neuropsychologia. 180: 108465 |
Klein CC, Berger P, Goucha T, et al. (2022) Children's syntax is supported by the maturation of BA44 at 4 years, but of the posterior STS at 3 years of age. Cerebral Cortex (New York, N.Y. : 1991) |
Schell M, Friederici AD, Zaccarella E. (2022) Neural classification maps for distinct word combinations in Broca's area. Frontiers in Human Neuroscience. 16: 930849 |
Sánchez SM, Schmidt H, Gallardo G, et al. (2022) White matter brain structure predicts language performance and learning success. Human Brain Mapping |