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Items where Author is "Giachino, C."

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Number of items: 8.

2015

Giachino, C. and Boulay, J. L. and Ivanek, R. and Alvarado, A. and Tostado, C. and Lugert, S. and Tchorz, J. and Coban, M. and Mariani, L. and Bettler, B. and Lathia, J. and Frank, S. and Pfister, S. and Kool, M. and Taylor, V.. (2015) A tumor suppressor function for Notch signaling in forebrain tumor subtypes. Cancer Cell, 28 (6). pp. 730-742.

2014

Giachino, C. and Barz, M. and Tchorz, J. S. and Tome, M. and Gassmann, M. and Bischofberger, J. and Bettler, B. and Taylor, V.. (2014) GABA suppresses neurogenesis in the adult hippocampus through GABAB receptors. Development, Vol. 141, H. 1. pp. 83-90.

2013

Giachino, C. and Basak, O. and Lugert, S. and Knuckles, P. and Obernier, K. and Fiorelli, R. and Frank, S. and Raineteau, O. and Alvarez-Buylla, A. and Taylor, V.. (2013) Molecular diversity subdivides the adult forebrain neural stem cell population. Stem cells, Vol. 32, H. 1. pp. 70-84.

2012

Tchorz, J. S. and Suply, T. and Ksiazek, I. and Giachino, C. and Cloetta, D. and Danzer, C. P. and Doll, T. and Isken, A. and Lemaistre, M. and Taylor, V. and Bettler, B. and Kinzel, B. and Mueller, M.. (2012) A modified RMCE-compatible Rosa26 locus for the expression of transgenes from exogenous promoters. PLoS ONE, Vol. 7, H. 1 , e30011.

Lugert, S. and Vogt, M. and Tchorz, J. S. and Muller, M. and Giachino, C. and Taylor, V.. (2012) Homeostatic neurogenesis in the adult hippocampus does not involve amplification of Ascl1(high) intermediate progenitors. Nature communications, Vol. 3 , Article Nr. 670.

Basak, O. and Giachino, C. and Fiorini, E. and Macdonald, H. R. and Taylor, V.. (2012) Neurogenic subventricular zone stem/progenitor cells are Notch1-dependent in their active but not quiescent state. Journal of Neuroscience, 32 (16). pp. 5654-5666.

2010

Lugert, S. and Basak, O. and Knuckles, P. and Haussler, U. and Fabel, K. and Gotz, M. and Haas, C. A. and Kempermann, G. and Taylor, V. and Giachino, C.. (2010) Quiescent and active hippocampal neural stem cells with distinct morphologies respond selectively to physiological and pathological stimuli and aging. Cell stem cell, Vol. 6, H. 5. pp. 445-456.

Ehm, O. and Goritz, C. and Covic, M. and Schaffner, I. and Schwarz, T. J. and Karaca, E. and Kempkes, B. and Kremmer, E. and Pfrieger, F. W. and Espinosa, L. and Bigas, A. and Giachino, C. and Taylor, V. and Frisen, J. and Lie, D. C.. (2010) RBPJkappa-dependent signaling is essential for long-term maintenance of neural stem cells in the adult hippocampus. Journal of Neuroscience, 30 (41). pp. 13794-13807.

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