Prof. Dr. Heiko J. Luhmann
FB 04 - Universitätsmedizin, Johannes Gutenberg-Universität Mainz
Bassetti, Davide; Luhmann, Heiko J.; Kirischuk, Sergei
Effects of Mutations in TSC Genes on Neurodevelopment and Synaptic TransmissionINTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. Bd. 22. H. 14. 2021
Khastkhodaei, Zeinab; Muthuraman, Muthuraman; Yang, Jenq-Wei et al.
Functional and directed connectivity of the cortico-limbic network in mice in vivoBRAIN STRUCTURE & FUNCTION. Bd. 226. H. 3. 2021 S. 685-700
Lombardi, Aniello; Luhmann, Heiko J.; Kilb, Werner
Modelling the spatial and temporal constrains of the GABAergic influence on neuronal excitabilityPLOS COMPUTATIONAL BIOLOGY. Bd. 17. H. 11. 2021
Sang, I. Emeline Wong Fong; Schroer, Jonas; Halbhuber, Lisa et al.
Optogenetically Controlled Activity Pattern Determines Survival Rate of Developing Neocortical NeuronsINTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. Bd. 22. H. 12. 2021
Ragot, Alienor; Luhmann, Heiko J.; Dipper-Wawra, Matthias et al.
Pathology-selective antiepileptic effects in the focal freeze-lesion rat model of malformation of cortical developmentEXPERIMENTAL NEUROLOGY. Bd. 343. 2021
Bassetti, Davide; Luhmann, Heiko J.; Kirischuk, Sergei
Presynaptic GABA(B) receptor-mediated network excitation in the medial prefrontal cortex of Tsc2(+/-) micePFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY. Bd. 473. H. 8. 2021 S. 1261-1271
Peter, Manuel; Aschauer, Dominik F.; Rose, Renata et al.
Rapid nucleus-scale reorganization of chromatin in neurons enables transcriptional adaptation for memory consolidationPLOS ONE. Bd. 16. H. 5. 2021
Huang, Weiyuan; Ke, Yue; Zhu, Jianping et al.
TRESK channel contributes to depolarization-induced shunting inhibition and modulates epileptic seizuresCELL REPORTS. Bd. 36. H. 3. 2021
Luhmann, Heiko J.; Fukuda, Atsuo
Can we understand human brain development from experimental studies in rodents?PEDIATRICS INTERNATIONAL. Bd. 62. H. 10. 2020 S. 1139-1144
Bassetti, Davide; Lombardi, Aniello; Kirischuk, Sergei et al.
Haploinsufficiency of Tsc2 Leads to Hyperexcitability of Medial Prefrontal Cortex via Weakening of Tonic GABAB Receptor-mediated InhibitionCEREBRAL CORTEX. Bd. 30. H. 12. 2020 S. 6313-6324