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Erhan Genç

Affiliations: 
Institute of Cognitive Neuroscience University of Bochum, Bochum, Nordrhein-Westfalen, Germany 
Area:
Visual system, Corpus Callosum
Website:
http://www.bio.psy.ruhr-uni-bochum.de/members_erhan.html
Google:
"Erhan Genç"
Mean distance: 13.01 (cluster 17)
 
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Publications

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Friedrich P, Fraenz C, Schlüter C, et al. (2020) The Relationship Between Axon Density, Myelination, and Fractional Anisotropy in the Human Corpus Callosum. Cerebral Cortex (New York, N.Y. : 1991)
Schlaffke L, Friedrich S, Tegenthoff M, et al. (2019) Boom Chack Boom-A multimethod investigation of motor inhibition in professional drummers. Brain and Behavior. e01490
Schlüter C, Arning L, Fraenz C, et al. (2019) Genetic Variation in Dopamine Availability Modulates the Self-reported Level of Action Control in a Sex-dependent Manner. Social Cognitive and Affective Neuroscience
Berretz G, Arning L, Gerding WM, et al. (2019) Structural Asymmetry in the Frontal and Temporal Lobes Is Associated with PCSK6 VNTR Polymorphism. Molecular Neurobiology
Schmitz J, Fraenz C, Schlüter C, et al. (2019) Hemispheric asymmetries in cortical gray matter microstructure identified by neurite orientation dispersion and density imaging. Neuroimage
Ocklenburg S, Friedrich P, Schmitz J, et al. (2018) Beyond frontal alpha: investigating hemispheric asymmetries over the EEG frequency spectrum as a function of sex and handedness. Laterality. 1-20
Ocklenburg S, Anderson C, Gerding WM, et al. (2018) Myelin Water Fraction Imaging Reveals Hemispheric Asymmetries in Human White Matter That Are Associated with Genetic Variation in PLP1. Molecular Neurobiology
Schlüter C, Fraenz C, Pinnow M, et al. (2018) The Structural and Functional Signature of Action Control. Psychological Science. 956797618779380
Anderson C, Gerding WM, Fraenz C, et al. (2018) PLP1 and CNTN1 gene variation modulates the microstructure of human white matter in the corpus callosum. Brain Structure & Function
Ocklenburg S, Friedrich P, Fraenz C, et al. (2018) Neurite architecture of the planum temporale predicts neurophysiological processing of auditory speech. Science Advances. 4: eaar6830
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