Artikel und Bücher

Anatomie III

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Buchartikel

Oelschläger HHA, Oelschläger JS (2009) Brain. In: Encyclopedia of Marine Mammals, Perrin WF, Würsig B, Thewissen JGM (Eds), Academic Press: 134-149

Kutzleb C, Busmann A, Wendland M, Maronde E (2005) Discovery of Novel Regulatory Peptides by Reverse Pharmacology: Spotlight on Chemerin and the RF-amide Peptides Metastin and QRFP. In: Exploiting the Peptide Pool: New Structures, Novel Functions and Therapeutic Opportunities, Guest Editor: Knut Adermann. Current Protein and Peptide Science 6: 265-278

Korf HW, Schomerus C, Maronde E, Stehle JH (2001) Signal transduction in the rodent pineal organ: activation of membrane-bound receptors stimulates gene expression. In Perspective in Comparative Endocrinology: Unity and Diversity, HJT Goos, RK Rastogi, H Vaudry, R Pierantoni (Eds), Bologna, Monduzzi Editore: 63-71

Korf HW, Schomerus C & Stehle JH (1998) The Pineal Organ, its Hormone Melatonin, and the Photoneuroendocrine System. Advances in Anatomy, Embryology, and Cell Biology, Springer, Berlin, New York, Vol 146, pp. 1-100

Olcese JM, Maronde E (1997) Species heterogeneity in pineal signal transduction mechanisms. In: Pineal Update edited by S.M. Webb et al., PJD Publications Westbury: 161-171

Rami A, Winckler J, and Rabié A (1997) Corticosterone Upregulates hippocampal Calbindin-D28K in region specific manner and  Exacerbates Ischemic Damage exclusively in non-calbindinergic neurons. Neuroendocrinology-Retrospect and Perspectives. Korf-Usadel, Eds. pp 193-205

Olcese JM, Middendorff R, Maronde E, Paust HJ, Davidoff M (1996) C-type natriuretic peptide (CNP) in the mammalian pineal gland: an endogenous autocrine peptide? In: The peptidergic neuron, Krisch B, Mentlein R (Eds), Birkhäuser: 297-302

Semkova I, Rami A, and Krieglstein J (1994) Neuroprotective activity of clenbuterol  against excitotoxic neuronal damage. In: Pharmacology of Cerebral Ischemia (Hrsg. J. Krieglstein and H. Oberpichler-Schwenk), Wiss Verlagges, Stuttgart, pp 397-406

Rami A and Krieglstein J (1993) Inhibition of proteolysis prevents neuronal damage caused by cytotoxic hypoxia or ischemia. In: Pharmacology of Cerebral Ischemia (Hrsg. J. Krieglstein and H. Oberpichler), Wiss Verlagsges, Stuttgart, pp 301-307

Jastorff B, Maronde E, van Bemmelen MXP, Zorn M, Störmann R (1992) Cyclic Nucleotide Metabolism as a target in Chemotherapy. In: Molecular Aspects of Chemotherapy, Shugar, Rode, Borowski (Eds), 3rd Int. Symp.1991, Warzawa and Springer: 73-104

Rami A, Rabié A, Thomasset M, and Krieglstein J (1990) Calbindin-D28k and delayed neuronal death in the rat hippocampus after cerebral ischemia. In: Pharmacology of Cerebral Ischemia (Hrsg. J. Krieglstein, H. Oberpichler), Wiss Verlagsges-Stuttgart, pp 123-128

Rischke R, Rami A, Bachmann U, Rabié A, and Krieglstein J (1990) Different vulnerability to ischemia of pre- and postsynaptic terminals in rat hippocampus. In: Pharmacology of Cerebral Ischemia (Hrsg. J. Krieglstein, H. Oberpichler), Wiss. Verlagsges. Stuttgart, pp 129-13

Rami A, Rabié A, Thomasset M, and Krieglstein J (1990) Calbindin-D28k and delayed neuronal death in the rat hippocampus after cerebral ischemia. In: Pharmacology of Cerebral Ischemia (Hrsg. J. Krieglstein, H. Oberpichler), Wiss. Verlagsges. Stuttgart, pp 123-128