Zagrebelsky, M.; Holz, A.; Dechant, G.; Barde, Y. A.; Bonhoeffer, T.; Korte, M.: The p75 neurotrophin receptor negatively modulates dendrite complexity and spine density in hippocampal neurons. The Journal of Neuroscience 25 (43), S. 9989 - 9999 (2005)
Gschwendtner, A.; Liu, Z. Q.; Hucho, T.; Bohatschek, M.; Kalla, R.; Dechant, G.; Raivich, G.: Regulation, cellular localization, and function of the p75 neurotrophin receptor (p75NTR) during the regeneration of facial motoneurons. Molecular and Cellular Neuroscience 24 (2), S. 307 - 322 (2003)
Kerschensteiner, M.; Stadelmann, C.; Dechant, G.; Wekerle, H.; Hohlfeld, R.: Neurotrophic cross-talk between the nervous and immune systems: Implications for neurological diseases. Annals of Neurology 53 (3), S. 292 - 304 (2003)
Brodski, C.; Schaubmar, A.; Dechant, G.: Opposing functions of GDNF and NGF in the development of cholinergic and noradrenergic sympathetic neurons. Molecular and Cellular Neuroscience 19 (4), S. 528 - 538 (2002)
Brodski, C.; Vogt Weisenhorn, D. M.; Dechant, G.: Therapy of neurodegenerative diseases using neurotrophic factors: Cell biological perspective. Expert reviews of neurotherapeutics 2 (3), S. 417 - 426 (2002)
Dechant, G.; Barde, Y. A.: The neurotrophin receptor p75(NTR): Novel functions and implications for diseases of the nervous system. Nature Neuroscience 5 (11), S. 1131 - 1136 (2002)
Naumann, T.; Casademunt, E.; Hollerbach, E.; Hofmann, J.; Dechant, G.; Frotscher, M.; Barde, Y. A.: Complete deletion of the neurotrophin receptor p75(NTR) leads to long-lasting increases in the number of basal forebrain cholinergic neurons. The Journal of Neuroscience 22 (7), S. 2409 - 2418 (2002)
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Rodriguez-Tebar, A.; Dechant, G.; Götz, R.; Barde, Y. A.: Binding of neurotrophin-3 to its neuronal receptors and interactions with nerve growth-factor and brain-derived neurotrophic factor. EMBO Journal 11 (3), S. 917 - 922 (1992)
Dechant, G.; Neumann, H.: Neurotrophins. In: Molecular and Cellular Biology of Neuroprotection in the CNS, Bd. 513, S. 303 - 334 (Hg. Alzheimer, C.) (2002)
Neue Forschungsergebnisse über den Schlaf von Reptilien zeigen überraschende Ähnlichkeiten zwischen den Netzwerken, die motorische Rhythmen steuern, und denen, die den Schlaf kontrollieren.