Search Results - "Mason, Ivor"

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  1. 1

    Initiation to end point: the multiple roles of fibroblast growth factors in neural development by Mason, Ivor

    Published in Nature reviews. Neuroscience (01-08-2007)
    “…From a wealth of experimental findings, derived from both in vitro and in vivo experiments, it is becoming clear that fibroblast growth factors regulate…”
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  2. 2

    Specific regions within the embryonic midbrain and cerebellum require different levels of FGF signaling during development by Basson, M Albert, Echevarria, Diego, Ahn, Christina Petersen, Sudarov, Anamaria, Joyner, Alexandra L, Mason, Ivor J, Martinez, Salvador, Martin, Gail R

    Published in Development (Cambridge) (01-03-2008)
    “…Prospective midbrain and cerebellum formation are coordinated by FGF ligands produced by the isthmic organizer. Previous studies have suggested that midbrain…”
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  3. 3

    Sprouty1 Is a Critical Regulator of GDNF/RET-Mediated Kidney Induction by Basson, M. Albert, Akbulut, Simge, Watson-Johnson, Judy, Simon, Ruth, Carroll, Thomas J., Shakya, Reena, Gross, Isabelle, Martin, Gail R., Lufkin, Thomas, McMahon, Andrew P., Wilson, Patricia D., Costantini, Frank D., Mason, Ivor J., Licht, Jonathan D.

    Published in Developmental cell (01-02-2005)
    “…Intercellular signaling molecules and their receptors, whose expression must be tightly regulated in time and space, coordinate organogenesis. Regulators of…”
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  4. 4

    Branching morphogenesis of the ureteric epithelium during kidney development is coordinated by the opposing functions of GDNF and Sprouty1 by Basson, M. Albert, Watson-Johnson, Judy, Shakya, Reena, Akbulut, Simge, Hyink, Deborah, Costantini, Frank D., Wilson, Patricia D., Mason, Ivor J., Licht, Jonathan D.

    Published in Developmental biology (15-11-2006)
    “…Branching of ureteric bud-derived epithelial tubes is a key morphogenetic process that shapes development of the kidney. Glial cell line-derived neurotrophic…”
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  5. 5

    Epiboly generates the epidermal basal monolayer and spreads the nascent mammalian skin to enclose the embryonic body by Panousopoulou, Eleni, Hobbs, Carl, Mason, Ivor, Green, Jeremy B A, Formstone, Caroline J

    Published in Journal of cell science (01-05-2016)
    “…Epiboly is a morphogenetic process that is employed in the surface ectoderm of anamniotes during gastrulation to cover the entire embryo. We propose here that…”
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  6. 6

    Unique and combinatorial functions of Fgf3 and Fgf8 during zebrafish forebrain development by Walshe, Jennifer, Mason, Ivor

    Published in Development (Cambridge) (15-09-2003)
    “…Complex spatiotemporal expression patterns of fgf3 and fgf8 within the developing zebrafish forebrain suggest their involvement in its regionalisation and…”
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  7. 7

    Fgf3 and Fgf8 are required together for formation of the otic placode and vesicle by Maroon, Habib, Walshe, Jennifer, Mahmood, Radma, Kiefer, Paul, Dickson, Clive, Mason, Ivor

    Published in Development (Cambridge) (01-05-2002)
    “…Fgf3 has long been implicated in otic placode induction and early development of the otocyst; however, the results of experiments in mouse and chick embryos to…”
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  8. 8

    Fgf8 expression defines a morphogenetic center required for olfactory neurogenesis and nasal cavity development in the mouse by Kawauchi, Shimako, Shou, Jianyong, Santos, Rosaysela, Hébert, Jean M, McConnell, Susan K, Mason, Ivor, Calof, Anne L

    Published in Development (Cambridge) (01-12-2005)
    “…In vertebrate olfactory epithelium (OE), neurogenesis proceeds continuously, suggesting that endogenous signals support survival and proliferation of stem and…”
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  9. 9

    Complex and dynamic patterns of Wnt pathway gene expression in the developing chick forebrain by Quinlan, Robyn, Graf, Manuela, Mason, Ivor, Lumsden, Andrew, Kiecker, Clemens

    Published in Neural development (04-09-2009)
    “…Wnt signalling regulates multiple aspects of brain development in vertebrate embryos. A large number of Wnts are expressed in the embryonic forebrain; however,…”
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  10. 10

    The emergence of ectomesenchyme by Blentic, Aida, Tandon, Panna, Payton, Sarah, Walshe, Jennifer, Carney, Tom, Kelsh, Robert N., Mason, Ivor, Graham, Anthony

    Published in Developmental dynamics (01-03-2008)
    “…In the head, neural crest cells generate ectomesenchymal derivatives: cartilage, bone, and connective tissue. Indeed, these cells generate much of the cranial…”
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  11. 11

    Fibroblast growth factor (FGF) gene expression in the developing cerebellum suggests multiple roles for FGF signaling during cerebellar morphogenesis and development by Yaguchi, Yuichiro, Yu, Tian, Ahmed, Mohi U., Berry, Mary, Mason, Ivor, Basson, M. Albert

    Published in Developmental dynamics (01-08-2009)
    “…The cerebellum is derived from the anterior‐most segment of the embryonic hindbrain, rhombomere 1 (r1). Previous studies have shown that the early development…”
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  12. 12

    Combinatorial activity of Flamingo proteins directs convergence and extension within the early zebrafish embryo via the planar cell polarity pathway by Formstone, Caroline J., Mason, Ivor

    Published in Developmental biology (15-06-2005)
    “…The seven-transmembrane protocadherin, Flamingo, functions in a number of processes during Drosophila development, including planar cell polarity (PCP). To…”
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  13. 13

    Critical role of FLRT1 phosphorylation in the interdependent regulation of FLRT1 function and FGF receptor signalling by Wheldon, Lee M, Haines, Bryan P, Rajappa, Rajit, Mason, Ivor, Rigby, Peter W, Heath, John K

    Published in PloS one (22-04-2010)
    “…Fibronectin leucine rich transmembrane (FLRT) proteins have dual properties as regulators of cell adhesion and potentiators of fibroblast growth factor (FGF)…”
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  14. 14

    Establishing the trochlear motor axon trajectory: role of the isthmic organiser and Fgf8 by Irving, Carol, Malhas, Amar, Guthrie, Sarah, Mason, Ivor

    Published in Development (Cambridge) (01-12-2002)
    “…Formation of the trochlear nerve within the anterior hindbrain provides a model system to study a simple axonal projection within the vertebrate central…”
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  15. 15

    Sequential roles for Fgf4, En1 and Fgf8 in specification and regionalisation of the midbrain by Shamim, H, Mahmood, R, Logan, C, Doherty, P, Lumsden, A, Mason, I

    Published in Development (Cambridge) (01-03-1999)
    “…Experiments involving tissue recombinations have implicated both early vertical and later planar signals in the specification and polarisation of the midbrain…”
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  17. 17

    A role for FGF-8 in the initiation and maintenance of vertebrate limb bud outgrowth by Mahmood, Radma, Bresnick, Janine, Hornbruch, Amata, Mahony, Catherine, Morton, Nicola, Colquhoun, Kate, Martin, Paul, Lumsden, Andrew, Dickson, Clive, Mason, Ivor

    Published in Current biology (01-07-1995)
    “…Background: The outgrowth of the vertebrate limb bud is the result of a reciprocal interaction between the mesenchyme and a specialized region of the ectoderm,…”
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  18. 18

    Expression of the Celsr/flamingo homologue, c‐fmi1, in the early avian embryo indicates a conserved role in neural tube closure and additional roles in asymmetry and somitogenesis by Formstone, Caroline J., Mason, Ivor

    Published in Developmental dynamics (01-02-2005)
    “…Flamingo is one of a core group of proteins that regulate planar cell polarity of epithelial structures within the Drosophila embryo while their vertebrate…”
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  19. 19

    FGF‐1 and FGF‐7 induce distinct patterns of growth and differentiation in embryonic lung epithelium by Cardoso, Wellington V., Itoh, Akihide, Nogawa, Hiroyuki, Mason, Ivor, Brody, Jerome S.

    Published in Developmental dynamics (01-03-1997)
    “…Fibroblast growth factors (FGFs) and receptors (FGFRs) are expressed in the developing lung and appear to be major regulators of lung growth and…”
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  20. 20

    Multiple roles for FGF-3 during cranial neural development in the chicken by Mahmood, R, Kiefer, P, Guthrie, S, Dickson, C, Mason, I

    Published in Development (Cambridge) (01-05-1995)
    “…FGF-3 has been implicated in the development of the hindbrain and otocyst in vertebrate embryos. Since the chicken embryo offers a favourable system in which…”
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