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1.
Edelmann, K. et al.: Increased radial glia quiescence, decreased reactivation upon injury and unaltered neuroblast behavior underlie decreased neurogenesis in the aging zebrafish telencephalon. J. Comp. Neurol. 521, 3099-3115 (2013)
2.
Kühne, C.* et al.: Visualizing corticotropin-releasing hormone receptor type 1 expression and neuronal connectivities in the mouse using a novel multifunctional allele. J. Comp. Neurol. 520, 3150-3180 (2012)
3.
Chapouton, P. et al.: Expression of hairy/enhancer of split genes in neural progenitors and neurogenesis domains of the adult zebrafish brain. J. Comp. Neurol. 519, 1748-1769 (2011)
4.
Volkmann, K. ; Chen, Y.Y.* ; Harris, M.P.* ; Wullimann, M.F.* & Köster, R.W.: The zebrafish cerebellar upper rhombic lip generates tegmental hindbrain nuclei by long-distance migration in an evolutionary conserved manner. J. Comp. Neurol. 518, 2794-2817 (2010)
5.
Lillesaar, C. ; Stigloher, C. ; Tannhäuser, B. ; Wullimann, M.F.* & Bally-Cuif, L.: Axonal projections originating from raphe serotonergic neurons in the developing and adult zebrafish, Danio rerio, using transgenics to visualize raphe-specific pet1 expression. H₂O. J. Comp. Neurol. 512, 158-182 (2008)
6.
Norton, W.H.J. ; Folchert, A. & Bally-Cuif, L.: Comparative analysis of serotonin receptor (HTR1A/HTR1B families) and transporter (slc6a4a/b) gene expression in the zebrafish brain. J. Comp. Neurol. 511, 521-542 (2008)
7.
Topp, C. et al.: Fgf signaling in the zebrafish adult brain: Association of Fgf activity with ventricular zones but not cell proliferation. J. Comp. Neurol. 510, 422-439 (2008)
8.
di Benedetto, B. et al.: Differential mRNA distribution of components of the ERK/MAPK signalling cascade in the adult mouse brain. J. Comp. Neurol. 500, 542-556 (2007)
9.
Mataruga, A.* ; Kremmer, E. & Müller, F.*: Type 3a and type 3b OFF cone bipolar cells provide for the alternative rod pathway in the mouse retina. J. Comp. Neurol. 502, 1123-1137 (2007)
10.
Nieto, M.* et al.: Expression of Cux-1 and Cux-2 in the subventricular zone and upper layers II-IV of the cerebral cortex. J. Comp. Neurol. 479, 168-180 (2004)