Claus C. Hilgetag

Jacobs University Bremen, Boston University, Bremen, Bremen, Germany 
Brain Connectivity, Computational Neuroanatomy, Systems Neuroscience, Neuromodulation
"Claus Hilgetag"
Mean distance: 16.32 (cluster 29)
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Toba MN, Malherbe C, Godefroy O, et al. (2020) Reply: Inhibition between human brain areas or methodological artefact? Brain : a Journal of Neurology. 143: e39
Toba MN, Zavaglia M, Malherbe C, et al. (2020) Game theoretical mapping of white matter contributions to visuospatial attention in stroke patients with hemineglect. Human Brain Mapping
Toba MN, Godefroy O, Rushmore RJ, et al. (2019) Revisiting 'brain modes' in a new computational era: approaches for the characterization of brain-behavioural associations. Brain : a Journal of Neurology
Hilgetag CC, Beul SF, van Albada SJ, et al. (2019) An architectonic type principle integrates macroscopic cortico-cortical connections with intrinsic cortical circuits of the primate brain. Network Neuroscience (Cambridge, Mass.). 3: 905-923
Damicelli F, Hilgetag CC, Hütt MT, et al. (2019) Topological reinforcement as a principle of modularity emergence in brain networks. Network Neuroscience (Cambridge, Mass.). 3: 589-605
Li D, Zavaglia M, Wang G, et al. (2019) Discrimination of the hierarchical structure of cortical layers in 2-photon microscopy data by combined unsupervised and supervised machine learning. Scientific Reports. 9: 7424
Valero-Cabré A, Toba MN, Hilgetag CC, et al. (2019) Perturbation-driven paradoxical facilitation of visuo-spatial function: Revisiting the 'Sprague effect'. Cortex; a Journal Devoted to the Study of the Nervous System and Behavior
Beul SF, Hilgetag CC. (2019) Neuron density fundamentally relates to architecture and connectivity of the primate cerebral cortex. Neuroimage. 189: 777-792
Beul SF, Goulas A, Hilgetag CC. (2018) Comprehensive computational modelling of the development of mammalian cortical connectivity underlying an architectonic type principle. Plos Computational Biology. 14: e1006550
Messé A, Hütt MT, Hilgetag CC. (2018) Toward a theory of coactivation patterns in excitable neural networks. Plos Computational Biology. 14: e1006084
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