Institut für Mikroskopische Anatomie und Neurobiologie
Vorklinik / Johannes Gutenberg-Universität Mainz
Distler, Ute; Schumann, Sven; Kesseler, Hans-Georg et al.
Proteomic Analysis of Brain Region and Sex-Specific Synaptic Protein Expression in the Adult Mouse BrainCELLS. Bd. 9. H. 2. 2020
Schneider, P.; Petzold, S.; Sommer, A. et al.
Altered synaptic phospholipid signaling in PRG-1 deficient mice induces exploratory behavior and motor hyperactivity resembling psychiatric disorders. A"Forrest Gump" mouse?Behav Brain Res. Bd. 336. 2019 S. 1-7
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Empfehlungen der Arbeitsgruppe der Anatomischen Gesellschaft zur Verringerung der Formaldehyd-Exposition in anatomischen Lehrplänen und InstitutenAnn Anat. Bd. 221. H. 179-185. 2019 S. 10.1016/j.aanat.2018.10.007
Gonzales-Escamilla, G.; Chirumamilla, VC; Meyer, B. et al.
Excitability regulation in the dorsomedial prefrontal cortex during sustained instructed fear responses: a TMS-EEG study.Science Reports in press. 2019 S. in press
Ellwardt, Erik; Pramanik, Gautam; Luchtman, Dirk et al.
Maladaptive cortical hyperactivity upon recovery from experimental autoimmune encephalomyelitis (vol 21, pg 1392, 2018)NATURE NEUROSCIENCE. Bd. 22. H. 1. 2019 S. 144-144
Vasic, VV; Barth, KB; Schmidt, SMHH
Neurodegeneration und Neuro-Regeneration-Alzheimer-Krankheit und Stammzelltherapie.Int J Mol Sci. Bd. 20. H. 17. 2019 S. 10.3390/ijms20174272
Schmitz, K; Wilken-Schmitz, A; Vasic, V et al.
Progranulin-Mangel verleiht Resistenz gegen Autoimmunenzephalomyelitis bei Mäusen.Zellmol Immunol. 2019 S. 10.1038/s41423-019-0274-5
Schmidt, Mirko H.H.; Sebetény, Tamás
Recommendations of the working group of the Anatomische Gesellschaft on reduction of formaldehyde exposure in anatomical curricula and institutesAnnals of Anatomy. Bd. 221. 2019 S. 179-185
Garg, A; Orru, R; Ye, W et al.
Structural and mechanistic insights into the interaction of the circadian transcription factor BMAL 1 with the KIX domain of the CREB-binding proteinJ Biol Chem. Bd. 294. H. 45. 2019 S. 16604-16619
Altmann, C.; Schmidt, MHH
The Role of Microglia in Diabetic Retinopathy: Inflammation, Microvasculature Defects and NeurodegenerationInternational Journal of Molecular Science. Bd. 19. H. 1. 2019 S. pii:E110