Forschungszentrum Translationale Neurowissenschaften (FTN)
Forschungsschwerpunkt / Johannes Gutenberg-Universität Mainz
Funke, Sebastian; Markowitsch, Sascha; Schmelter, Carsten et al.
In-Depth Proteomic Analysis of the Porcine Retina by Use of a four Step Differential Extraction Bottom up LC MS PlatformMOLECULAR NEUROBIOLOGY. Bd. 54. H. 9. 2017 S. 7262-7275
Fleischer, Vinzenz; Groeger, Adriane; Koirala, Nabin et al.
Increased structural white and grey matter network connectivity compensates for functional decline in early multiple sclerosisMULTIPLE SCLEROSIS JOURNAL. Bd. 23. H. 3. 2017 S. 432-441
Starosta, Sarah; Bartetzko, Isabelle; Stuettgen, Maik C. et al.
Integration of contextual cues into memory depends on "prefrontal" N-methyl-D-aspartate receptorsNEUROBIOLOGY OF LEARNING AND MEMORY. Bd. 144. 2017 S. 19-26
Remy, Melissa M.; Sahin, Mehmet; Flatz, Lukas et al.
Interferon-gamma-Driven iNOS: A Molecular Pathway to Terminal Shock in Arenavirus Hemorrhagic FeverCELL HOST & MICROBE. Bd. 22. H. 3. 2017 S. 354-+
Lenart, N.; Wong, R.; Martinecz, B. et al.
Interleukin-1 contributes to neuronal injury via cell-specific IL-1 type 1 receptor-mediated actions after cerebral ischemiaJOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM. Bd. 37. 2017 S. 6-6
Anders, Fabian; Teister, Julia; Liu, Aiwei et al.
Intravitreal injection of beta-crystallin B2 improves retinal ganglion cell survival in an experimental animal model of glaucomaPLOS ONE. Bd. 12. H. 4. 2017
Mongillo, Gianluigi; Rumpel, Simon; Loewenstein, Yonatan
Intrinsic volatility of synaptic connections - a challenge to the synaptic trace theory of memoryCURRENT OPINION IN NEUROBIOLOGY. Bd. 46. 2017 S. 7-13
Matsuwaki, Takashi; Shionoya, Kiseko; Ihnatko, Robert et al.
Involvement of interleukin-1 type 1 receptors in lipopolysaccharide-induced sickness responsesBRAIN BEHAVIOR AND IMMUNITY. Bd. 66. 2017 S. 165-176
Sommer, Clemens J.
Ischemic stroke: experimental models and realityACTA NEUROPATHOLOGICA. Bd. 133. H. 2. 2017 S. 245-261
Weckmann, Katja; Deery, Michael J.; Howard, Julie A. et al.
Ketamine's antidepressant effect is mediated by energy metabolism and antioxidant defense systemSCIENTIFIC REPORTS. Bd. 7. 2017