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Summary Anatomy Item Literature (1851) Expression Attributions Wiki
XB-ANAT-16

Papers associated with hindbrain

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Developmental and regional expression pattern of a novel NMDA receptor-like subunit (NMDAR-L) in the rodent brain., Sucher NJ., J Neurosci. October 1, 1995; 15 (10): 6509-20.


Cloning and embryonic expression of Xenopus laevis GAP-43 (XGAP-43)., Shain DH., Dev Biol. October 30, 1995; 697 (1-2): 241-6.          


Fibroblast growth factor is a direct neural inducer, which combined with noggin generates anterior-posterior neural pattern., Lamb TM., Development. November 1, 1995; 121 (11): 3627-36.          


The inositol trisphosphate receptor of Xenopus oocytes., Parys JB., Cell Calcium. November 1, 1995; 18 (5): 353-63.


Specification of the anteroposterior neural axis through synergistic interaction of the Wnt signaling cascade with noggin and follistatin., McGrew LL., Dev Biol. November 1, 1995; 172 (1): 337-42.    


Evidence for a metabostatic opioid kappa-receptor inhibiting pertussis toxin-sensitive metabotropic glutamate receptor-currents in Xenopus oocytes., Ueda H., FEBS Lett. November 20, 1995; 375 (3): 201-5.


Platelet-derived growth factor receptor is a novel modulator of type A gamma-aminobutyric acid-gated ion channels., Valenzuela CF., Mol Pharmacol. December 1, 1995; 48 (6): 1099-107.


Differential effects of retinoic acid and a retinoid antagonist on the spatial distribution of the homeoprotein Hoxb-7 in vertebrate embryos., López SL., Dev Dyn. December 1, 1995; 204 (4): 457-71.      


Sequence and expression pattern of the Stra7 (Gbx-2) homeobox-containing gene induced by retinoic acid in P19 embryonal carcinoma cells., Bouillet P., Dev Dyn. December 1, 1995; 204 (4): 372-82.


Caudalization of neural fate by tissue recombination and bFGF., Cox WG., Development. December 1, 1995; 121 (12): 4349-58.                


Drosophila short gastrulation induces an ectopic axis in Xenopus: evidence for conserved mechanisms of dorsal-ventral patterning., Schmidt J., Development. December 1, 1995; 121 (12): 4319-28.                


Expression of truncated Sek-1 receptor tyrosine kinase disrupts the segmental restriction of gene expression in the Xenopus and zebrafish hindbrain., Xu Q., Development. December 1, 1995; 121 (12): 4005-16.    


Vertical versus planar induction in amphibian early development., Nieuwkoop PD., Dev Growth Differ. December 1, 1995; 37 (6): 653-668.


Anuran dorsal column nucleus: organization, immunohistochemical characterization, and fiber connections in Rana perezi and Xenopus laevis., Muñoz A., J Comp Neurol. December 11, 1995; 363 (2): 197-220.


Modulation of GABAA receptor function by G protein-coupled 5-HT2C receptors., Huidobro-Toro JP., Neuropharmacology. January 1, 1996; 35 (9-10): 1355-63.


Larval development of tectal efferents and afferents in Xenopus laevis (Amphibia Anura)., Chahoud BH., J Hirnforsch. January 1, 1996; 37 (4): 519-35.


Early regionalized expression of a novel Xenopus fibroblast growth factor receptor in neuroepithelium., Riou JF., Biochem Biophys Res Commun. January 5, 1996; 218 (1): 198-204.          


A novel neuronal P2x ATP receptor ion channel with widespread distribution in the brain., Séguéla P., J Neurosci. January 15, 1996; 16 (2): 448-55.


CDNA cloning of chick brain alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptors reveals conservation of structure, function and post-transcriptional processes with mammalian receptors., Paperna T., Brain Res Mol Brain Res. February 1, 1996; 36 (1): 101-13.


Regulation of vertebrate neural cell fate by transcription factors., Bang AG., Curr Opin Neurobiol. February 1, 1996; 6 (1): 25-32.


Zinc finger proteins in early Xenopus development., Hollemann T., Int J Dev Biol. February 1, 1996; 40 (1): 291-5.          


Retinoic acid receptors and nuclear orphan receptors in the development of Xenopus laevis., Dreyer C., Int J Dev Biol. February 1, 1996; 40 (1): 255-62.        


A fork head related multigene family is transcribed in Xenopus laevis embryos., Lef J., Int J Dev Biol. February 1, 1996; 40 (1): 245-53.  


Developmental expression and differential regulation by retinoic acid of Xenopus COUP-TF-A and COUP-TF-B., van der Wees J., Mech Dev. February 1, 1996; 54 (2): 173-84.          


The Xenopus laevis homeobox gene Xgbx-2 is an early marker of anteroposterior patterning in the ectoderm., von Bubnoff A., Mech Dev. February 1, 1996; 54 (2): 149-60.          


Interactions between rhombomeres modulate Krox-20 and follistatin expression in the chick embryo hindbrain., Graham A., Development. February 1, 1996; 122 (2): 473-80.


Further investigation of ionic diffusive properties and of NH4+ pathways in Xenopus laevis oocyte cell membrane., Cougnon M., Pflugers Arch. February 1, 1996; 431 (4): 658-67.


Overexpression of the homeobox gene Xnot-2 leads to notochord formation in Xenopus., Gont LK., Dev Biol. February 25, 1996; 174 (1): 174-8.  


Xenopus Xsal-1, a vertebrate homolog of the region specific homeotic gene spalt of Drosophila., Hollemann T., Mech Dev. March 1, 1996; 55 (1): 19-32.          


The LIM homeodomain protein Lim-1 is widely expressed in neural, neural crest and mesoderm derivatives in vertebrate development., Karavanov AA., Int J Dev Biol. April 1, 1996; 40 (2): 453-61.          


Inductive processes leading to inner ear formation during Xenopus development., Gallagher BC., Dev Biol. April 10, 1996; 175 (1): 95-107.


Immunohistochemical investigation of gamma-aminobutyric acid ontogeny and transient expression in the central nervous system of Xenopus laevis tadpoles., Barale E., J Comp Neurol. April 29, 1996; 368 (2): 285-94.


Cloning of a novel component of A-type K+ channels operating at subthreshold potentials with unique expression in heart and brain., Serôdio P., J Neurophysiol. May 1, 1996; 75 (5): 2174-9.


Cloning of a G protein-activated inwardly rectifying potassium channel from human cerebellum., Schoots O., Brain Res Mol Brain Res. July 1, 1996; 39 (1-2): 23-30.


Glass-funnel technique for the recording of membrane currents and intracellular perfusion of Xenopus oocytes., Shuba YM., Pflugers Arch. July 1, 1996; 432 (3): 562-70.


Evidence for an anuran homologue of the mammalian spinocervicothalamic system: an in vitro tract-tracing study in Xenopus laevis., Muñoz A., Eur J Neurosci. July 1, 1996; 8 (7): 1390-400.


Kv8.1, a new neuronal potassium channel subunit with specific inhibitory properties towards Shab and Shaw channels., Hugnot JP., EMBO J. July 1, 1996; 15 (13): 3322-31.


Platelet-derived growth factor induces a long-term inhibition of N-methyl-D-aspartate receptor function., Valenzuela CF., J Biol Chem. July 5, 1996; 271 (27): 16151-9.


Nitric oxide synthase in the brain of a urodele amphibian (Pleurodeles waltl) and its relation to catecholaminergic neuronal structures., González A., Dev Biol. July 15, 1996; 727 (1-2): 49-64.


Different characteristics of AMPA receptor agonists acting at AMPA receptors expressed in Xenopus oocytes., Wahl P., Eur J Pharmacol. July 18, 1996; 308 (2): 211-8.


Heteromeric channel formation and Ca(2+)-free media reduce the toxic effect of the weaver Kir 3.2 allele., Tucker SJ., FEBS Lett. July 29, 1996; 390 (3): 253-7.


A new mouse member of the Wnt gene family, mWnt-8, is expressed during early embryogenesis and is ectopically induced by retinoic acid., Bouillet P., Mech Dev. August 1, 1996; 58 (1-2): 141-52.


Transcription of XLPOU3, a brain-specific gene, during Xenopus laevis early embryogenesis., Baltzinger M., Mech Dev. August 1, 1996; 58 (1-2): 103-14.        


Transport of drugs across the Xenopus pulmonary membrane and their absorption enhancement by various absorption enhancers., Okumura S., Pharm Res. August 1, 1996; 13 (8): 1247-51.


Neuropeptide Y: localization in the brain and pituitary of the developing frog (Rana esculenta)., D'Aniello B., Cell Tissue Res. August 1, 1996; 285 (2): 253-9.


Involvement of protein kinase C in gamma-aminobutyric acid release from Xenopus oocytes injected with rat brain mRNA., Kan S., J Neurochem. August 1, 1996; 67 (2): 868-71.


Integrin alpha 6 expression is required for early nervous system development in Xenopus laevis., Lallier TE., Development. August 1, 1996; 122 (8): 2539-54.                                  


Structure, functional expression, and cerebral localization of the levocabastine-sensitive neurotensin/neuromedin N receptor from mouse brain., Mazella J., J Neurosci. September 15, 1996; 16 (18): 5613-20.


Embryonic expression patterns of Xenopus syndecans., Teel AL., Mech Dev. October 1, 1996; 59 (2): 115-27.          


Catalytic and non-catalytic forms of the neurotrophin receptor xTrkB mRNA are expressed in a pseudo-segmental manner within the early Xenopus central nervous system., Islam N., Int J Dev Biol. October 1, 1996; 40 (5): 973-83.        

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