يعرض 1 - 20 نتائج من 62 نتيجة بحث عن '"Hardiman, K."', وقت الاستعلام: 0.56s تنقيح النتائج
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    المساهمون: Sakamoto, N, Feng, Y, Stolfi, C, Kurosu, Y, Green, M, Lin, J, Green, Me, Sentani, K, Yasui, W, Mcmahon, M, Hardiman, Km, Spence, Jr, Horita, N, Greenson, Jk, Kuick, R, Cho, Kr, Fearon, Er

    Relation: info:eu-repo/semantics/altIdentifier/pmid/28072391; info:eu-repo/semantics/altIdentifier/wos/WOS:000393399000001; volume:6; journal:ELIFE; http://hdl.handle.net/2108/253632; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85011035037

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    Report
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    Book

    المساهمون: Jackson, S. D., Hargreaves, J. S. J., Lennon, D.

    المصدر: Catalysis in Application ; page 16-23 ; ISBN 9780854046089 9780854046089 9781847550347

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    المساهمون: Institut de Biologie du Développement de Marseille (IBDM), Aix Marseille Université (AMU)-Centre National de la Recherche Scientifique (CNRS)

    المصدر: ISSN: 0950-1991.

    مصطلحات موضوعية: [SDV.BC]Life Sciences [q-bio]/Cellular Biology

    Relation: hal-00310888; https://hal.science/hal-00310888

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    وصف الملف: application/pdf

    Relation: Barald, K.F.; Lindberg, K.H.; Hardiman, K.; Kavka, A.I.; Lewis, J.E.; Victor, J.C.; Gardner, C.A.; Poniatowski, A. (1997). "Immortalized cell lines from embryonic avian and murine otocysts: Tools for molecular studies of the developing inner ear." International Journal of Developmental Neuroscience 15(4-5): 523-540.; https://hdl.handle.net/2027.42/153238; International Journal of Developmental Neuroscience; J.E. Morgan, J.R. Beauchamp, C.N. Pagel, M. Peckham, P. Ataliotis, P.S. Jat, M.D. Noble, K. Farmer, T.A. Partridge. Myogenic cell lines derived from transgenic mice carrying a thermolabile T antigen: a model system for the derivation of tissue‐specific and mutation‐specific cell lines. Dev. Biol. 162: 1994; 486 – 498; Lindberg K. H., Victor J. C., Lewis J. E., Nguyen‐Luu D., Ng A., Germiller J., Siram S., Kudilico K. T., Poniatowski A. and Barald K. F. Plasticity of gene expression in the developing chick inner ear (submitted).; K.H. Lindberg, G.R. Dressler, K.F. Barald. The cellular environment controls the expression of Pax‐2 protein in the otocyst during development of the chick inner ear Molecular Development of the Ear, Meeting Abstr. Bethesda, MD, U.S.A. 1995; S. Martinez, F. Marin, M.A. Nieto, L. Puelles. Induction of ectopic engrailed expression and fate change in avian rhombomeres: intersegmental boundaries as barriers. Mech. Dev. 51: 1995; 289 – 303; J.R. McPhee, T.R. Van de Water. Epithelial‐mesenchymal tissue interactions guiding otic capsule formation: the role of the otocyst. J. Embryol. Expl Morphol. 97: 1986; 1 – 24; G. Meza, I. Lopez, M.A. Paredes, Y. Penaloza, A. Boblano. Cellular target of streptomycin in the internal ear. Acta Otolaryngol. (Stockh.). 107: 1989; 406 – 411; D. Michel, G. Gillet, M. Volovitch, B. Pessac, G. Calothy, G. Brun. Expression of a novel gene encoding a 51.5 precursor protein in induced by different retroviral oncogenes in quail neuroretinal cells. Oncogene Res. 4: 1989; 127 – 136; M. Noble, A.K. Groves, P. Ataliotis, Z. Ikram, P.S. Jat. The W2KbtsA58 transgenic mouse: a new tool for the rapid generation of novel cell lines. Transgenic Res. 4: 1995; 215 – 225; H.O. Nornes, G.R. Dressler, E.W. Knapik, U. Deutsch, P. Gruss. Spatially and temporally restricted expression of Pax, 2 during murine neurogenesis. Development. 109: 1990; 797 – 809; E.C. Oesterle, T.T. Tsue, T.A. Reh, E.M. Rubel. Hair‐cell regeneration in organ cultures of the postnatal chicken inner ear. Hearing Res. 70: 1993; 85 – 108; N.H. Patel, E. Martin‐Blanco, K.G. Coleman, S.J. Poole, M.C. Ellis, T.B. Kornberg, C.S. Goodman. Expression of engrailed proteins in arthropods, annelids, and chordates. Cell. 58: 1989; 955 – 968.42; U. Pirvola, J. Ylikoski, J. Paigi, E. Lethonen, U. Arumae, M. Saarma. Brain‐derived neurotrophic factor and neurotrophin 3 mRNAs in the peripheral target fields of developing inner ear ganglia. Proc. natn Acad. Sci. U.S.A. 89: 1992; 9915 – 9919; E. Pugin. Sur le comportement des troncons du tube neural et de la chorde d’embryon de souris greffes à la place des organes homologues chez l’embryon de poulet. C.r. Acad. Sci. Hebd. Séances Acad. Sci. D. 276: 1973; 3477 – 3480; J. Represa, A. Sanchez, C. Miner, J. Lewis, F. Giraldez. Retinoic acid modulation of the early development of the inner ear is associated with the control of c‐ fos expression. Development. 110: 1990; 1081 – 1090; N.G. Robertson, U. Khetarpal, G.A. Gutierrez‐Espeleta, F.R. Bieber, C.C. Morton. Isolation of novel and known genes from a human fetal cochlear cDNA library using subtractive hybridization and differential screening. Genomics. 23: 1994; 42 – 50; T. Rogulska, W. Ozdzenski, A. Komar. Behaviour of mouse primordial germ cells in the chick embryo. J. Embryol. Expl Morphol. 25: 1971; 155 – 164; Y. Sasai, B. Lu, H. Steinbeisser, E.M. De Robertis. Regulation of neural induction by the Chd and Bmp‐4 antagonistic pattering signals in Xenopus. Nature. 376: 1995; 333 – 336; J.E. Schmidt, A. Suzuki, N. Ueno, D. Kimelman. Localized BMP‐4 mediates dorsal/ventral pattering in the early Xenopus embryo. Dev. Biol. 169: 1995; 37 – 50; G. Shaw, M. Osborn, K. Weber. Reactivity of a panel of neurofilament antibodies on phosphorylated and dephosphorylated neurofilaments. Eur. J. Cell Biol. 42: 1986; 1 – 9; J. Thiebold, V. Karcher‐Djuricic. Developpement des ebauches dentaires presomptives de souris greffees dans le coelome de l’embryon de poulet. C.r. Acad. Sci. Hebd. Séances Acad. Sci. D. 274: 1972; 274 – 276; K.L. Tio, D. Cuminge, E. Wolff. Sur l’innervation de greffons implantes dans l’embryon de poulet. C.r. Acad. Sci. Hebd. Séances Acad. Sci. D. 266: 1968; 4 – 7; E. Vazquez, T.R. Van de Water, M. Del Valle, J.A. Vega, H. Staecker, J. Giraldez Rand Represa. Pattern of trkB protein‐like immunoreactivity in vivo and the in vitro effects of brain‐derived neurotrophic factor (BDNF) on developing cochlear and vestibular neurons. Anat. Embryol. 189: 1994; 157 – 167; T. Van de Water, R.J. Ruben. Growth of the inner ear in organ culture. Ann. Otol. Rhinol. Laryngol. 83: 1974; 811 – 816; M. Wassef, L. Bally‐Cuif, R.M. Alvarado‐Mallart. Regional specification during cerebellar development. Perspect. Dev. Neurobiol. 1: 1993; 127 – 132; R.H. Whitehead, J.L. Joseph. Derivation of conditionally immortalized cell lines containing the Min mutation from the normal colonic mucosa and other tissues of an “Immortomouse”/Min hybrid. Epithel. Cell Biol. 3: 1994; 119 – 125; R.H. Whitehead, P.E. VanEeden, M.D. Noble, P. Ataliotis, P.S. Jat. Establishment of conditionally immortalized epithelial cell lines from both colon and small intestine of adult H‐2Kb‐tsA58 transgenic mice. Proc. natn Acad. Sci. U.S.A. (1993). 15: 1993; 6894, 90(14) R.H. Whitehead, P.E. VanEeden, M.D. Noble, P. Ataliotis, P.S. Jat. Establishment of conditionally immortalized epithelial cell lines from both colon and small intestine of adult H‐2Kb‐tsA58 transgenic mice. 2nd edn Proc. natn. Acad. Sci. U.S.A. 90: 1993; 587 – 591; P.A. Wilson, A. Hemmati‐Brivanlou. Induction of epidermis and inhibition of neural fate by Bmp‐4. Nature. 376: 1995; 331 – 333; A. Wolff, M. Houdayer, D. Chillet, B. de Nechaud, P. Denoulet. Structure of the polyglutamyl chain of tubulin: occurrence of alpha and gamma linkages between glutamyl units revealed by monoreactive polyclonal antibodies. Biol. Cell. 81: 1994; 11 – 16; A. Wolff, B. de Nechaud, D. Chillet, H. Mazarguil, E. Desbruyeres, S. Audebert, B. Edde, F. Gros, P. Denoulet. Distribution of glutamylated alpha and beta‐tubulin in mouse tissues using a specific monoclonal antibody, GT335. Eur. J. Cell Biol. 59: 1992; 425 – 432; T.‐W.L. Gong, A.D. Hegeman, J.J. Shin, K.H. Lindberg, K.F. Barald, M.I. Lomax. Novel genes expressed in the chick otocyst during development: identification using differential display of RNA. Intl J. Dev. Neurosci. 15: 1996; 585 – 594; M. Anniko. Hair cell differentiation following tissue interactions for induction of otocyst morphogenesis. Arch Otorhinolaryngol. 242: 1985; 287 – 294; M. Anniko, H. Nordemar, M.L. Spangberg, J. Schacht. Biochemical studies on the embryonic development of the mammalian inner ear in organ culture. Arch Otorhinolaryngol. 230: 1981; 237 – 243; M.A. Avila, I. Varela‐Nieto, G. Romero, J.M. Mato, F. Giraldez, T.R. Van De Water, J. Represa. Brain‐derived neurotrophic factor and neurotrophin‐3 support survival and neuritogenesis response of developing cochleovestibular ganglion neurons. Dev. Biol. 159: 1993; 266 – 275; K.F. Barald. Culture conditions affect the cholinergic development of an isolated subpopulation of chick mesencephalic neural crest cells. Dev. Biol. 135: 1989; 349 – 366; K.F. Barald. Monoclonal antibodies made to chick mesencephalic neural crest cells and to ciliary ganglion neurons identify a common antigen on the neurons and a neural crest subpopulation. J. Neurosci. Res. 21: 1988; 107 – 118; K.F. Barald. The antigen recognized by monoclonal antibodies to mesencephalic neural crest and to ciliary ganglion neurons is involved in the high affinity choline uptake mechanism in these cells. J. Neurosci. Res. 21: 1988; 119 – 134; Y.‐A. Barde, D. Edgar, H. Thoenen. Purification of a new neurotrophic factor from mammalian brain. EMBO J. 1: 1982; 549 – 553; R. Bather, B.C. Becker, G. Contreras, J. Furesz. Heterotransplantation studies with tissue culture cell lines in various animal and, in vitro, host systems. J. Biol. Stand. 13: 1985; 13 – 22; P. Bernd, J. Represa. Characterization and localization of nerve growth factor receptors in the embryonic otic vesicle and cochleovestibular ganglion. Dev. Biol. 134: 1989; 11 – 20; L.L. Bruce, J.J. Kingsley, D.H. Nichols, B. Fritzsch. The development of vestibulocochlear efferents and cochlear afferents in mice. Intl J. Dev. Neurosci. 15: 1997; 671 – 692; J.M. Cairns. Development of grafts from mouse embryos to the wing bud of the chick embryo. Dev. Biol. 12: 1965; 36 – 52; T.J. Chambers, J.M. Owens, G. Hattersley, P.S. Jat, M.D. Noble. Generation of osteoclast‐inductive and osteoclastogenic cell lines from the W2KbtsA58 transgenic mouse. Proc. natn Acad. Sci. U.S.A. 90: 1993; 5578 – 5582; D.P. Corey, X.O. Breakefield. Transcription factors in inner ear development. Proc. natn Acad. Sci. U.S.A. 91: 1994; 433 – 436; G.F. Couly, P.M. Coltey, N.M. Le Douarin. The triple origin of skull in higher vertebrates: a study in quailchick chimeras. Development. 117: 1993; 409 – 429; A.M. Davies, H. Thoenen, Y.‐A. Barde. the response of chick sensory neurons to brain‐derived neurotrophic factor. J. Neurosci. 6: 1986; 1897 – 1904; C.A. Davis, D.P. Holmyard, K.J. Millen, A.L. Joyner. Examining pattern formation in mouse, chicken and frog embryos with an En‐specific antiserum. Development. 111: 1991; 287 – 298; S. Dougan, S. DiNardo. Drosophila wingless generates cell type diversity among engrailed expressing cells. Nature. 360: 1992; 347 – 350; G.R. Dressler, U. Deutsch, K. Chowdhury, H.O. Nornes, P. Gruss. Pax‐2, a new murine paired‐boxcontaining gene and its expression in the developing excretory system. Development. 109: 1990; 787 – 795; E. Dupin, N.M. Le Douarin. Retinoic acid promotes the differentiation of adrenergic cells and melanocytes in quail neural crest cultures. Dev. Biol. 168: 1995; 529 – 548; E. Ehler, P.S. Jat, M.D. Noble, S. Citi, A. Draeger. Vascular smooth muscle cells of H‐2Kb‐tsA58 transgenic mice. Characterization of cell lines with distinct properties. Circulation. 92: 1995; 3289 – 3296; R. Ernfors, T. Van De Water, J. Loring, R. Jaenisch. Complementary roles of BDNF and NT‐3 in vestibular and Auditory development. Neuron. 14: 1995; 1153 – 1164; A. Fjose, H.G. Eiken, P.R. Njolstad, A. Molven, I. Hordvik. A zebrafish engrailed ‐like homeobox sequence expressed during embryogenesis. FEBS Lett. 231: 1988; 355 – 360; J.C. Fontaine‐Perus, M. Chanconie, N.M. Le Douarin, M.D. Gershon, T.P. Rothman. Mitogenic effect of muscle on the neuroepithelium of the developing spinal cord. Development. 107: 1989; 413 – 422; P.H. Francis‐West, T. Tatla, P.M. Brickell. Expression patterns of the bone morphogenetic protein genes Bmp‐4 and Bmp‐2 in the developing chick face suggest a role in outgrowth of the primordia. Dev. Dyn. 201: 1994; 168 – 178; Fritzsch B., Barald K. F. and Lomax M. I. Embryology of the vertebrate ear. In Handbook of Auditory Physiology (eds Popper A. N., Rubel E. and Fay R. ). Springer Verlag (in press).; B. Fritzsch, P.A. Sarai, M. Barbacid, I. Silos‐Santiago. Mice with a targeted disruption of the neurotrophin receptor trk, B lose their gustatory ganglion cells early but do develop taste buds. Intl J. Dev. Neurosci. 15: 1997; 563 – 576; C.A. Gardner, D.K. Darnell, S.J. Poole, C.P. Ordahl, K.F. Barald. Expression of an engrailed‐like gene during development of the early chick nervous system. J. Neurosci. Res. 21: 1988; 426 – 437; C.A. Gardner, K.F. Barald. The cellular environment controls the expression of engrailed ‐like protein in the cranial neuroepithelium of quail/chick‐chimeric embryos. Development. 113: 1991; 1037 – 1048; C.A. Gardner, A.I. Kavka, K.F. Barald. Expression of an engrailed‐like gene in the nervous system and head mesenchyme of the chick embryo. J. Cell Biol. 109: 1989; 59a; C.A. Gardner, K.F. Barald. Expression patterns of engrailed‐like protein in the chick embryo. Dev. Dyn. 193: 1992; 370 – 388; A.K. Groves, A. Entwistle, P.S. Jat, M. Noble. The characterization of astrocyte cell lines that display properties of glial scar tissue. Dev. Biol. 159: 1993; 87 – 104; V. Hamburger, V.L. Hemilton. A series of normal stages in the development of the chick embryo. J. Morphol. 88: 1951; 49 – 92; A. Hemmati‐Brivanlou, G.H. Thomsen. Ventral mesodermal patterning in Xenopus embryos: expression patterns and activities of BMP‐2 and BMP‐4. Dev. Genet. 17: 1995; 78 – 89; A. Hemmati‐Brivanlou, J.R. Torre, C. Holt, M. Richard. Cephalic expression and molecular characterization of Xenopus En‐2. Development. 111: 1991; 715 – 724; S.G. Hemond, D.K. Morest. Ganglion formation from the otic placode and the otic crest in the chick embryo: mitosis, migration, and the basal lamina. Anat. Embryol. 184: 1991; 1 – 13; P.D. Henion, J.A. Weston. Retinoic acid selectively promotes the survival and proliferation of neurogenic precursors in cultured neural crest cell populations. Dev. Biol. 161: 1994; 243 – 250; C. Henry, J. Marbrook, D.C. Vann, D. Kodlin, C. Wofsy. Limiting dilution analysis B. Mishell, S.M. Shiigi. Selected Methods in Cellular Immunology. 1980; W. H. Freeman & Co: San Francisco; 138 – 152; P. Herman, R. Cassigena, G. Friedlander, P. Soler, A. Grodet, P. Tran Ba Huy, C. Amiel. Middle ear cell line that maintains vectorial electrolyte transport. J. Cell Physiol. 154: 1993; 615 – 622; T.J. Hinterberger, K.F. Barald. Fusion between myoblasts and mature muscle fibers promotes remodeling of fibers into myotubes in vitro. Development. 109: 1990; 139 – 148; P.W.H. Holland, N.A. Williams. Conservation of engrailed ‐like homeobox sequences during vertebrate evolution. FEBS Lett. 277: 1990; 250 – 252; M.C. Holley, Y. Nishida, N. Grix. Conditional immortalisation of hair cells from the inner ear. Intl J. Dev. Neurosci. 15: 1997; 541 – 552; P.S. Jat, M.D. Noble, P. Ataliotis, Y. Tanaka, N. Yannoutsos, L. Larsen, D. Kioussis. Direct derivation of conditionally immortal cell lines from an W2Kb‐tsA58 transgenic mouse. Proc. natn Acad. Sci. U.S.A. 88: 1991; 5096 – 5100; P.S. Jat, P.A. Sharp. Cell lines established by a temperature‐sensitive simian virus 40 large T‐antigen gene are growth restricted at the nonpermissive temperature. Mol. Cell Biol. 9: 1989; 1672 – 1681; C.M. Jones, K.M. Lyons, B.L. Hogan. Involvement of bone morphogenetic protein‐4 (BMP‐4) and Vgr‐1 in morphogenesis and neurogenesis in the mouse. Development. 111: 1991; 531 – 542; R. Jove, E.A. Garber, H. Iba, H. Hanafusa. Biochemical properties of p60v‐src mutants that induce different cell transformation parameters. J. Virol. 60: 1986; 849 – 857; R. Jove, B.J. Mayer, H. Iba, D. Laugier, F. Poirier, G. Calothy, T. Hanafusa, H. Hanafusa. Genetic analysis of p60v‐src domains involved in the induction of different cell transformation parameters. J. Virol. 60: 1986; 840 – 848; A.L. Joyner, T. Kornberg, K.G. Coleman, D.R. Cox, G.R. Martin. Expression during embryogenesis of a mouse gene with sequence homology to the Drosophila engrailed gene. Cell. 43: 1985; 29 – 37; A.L. Joyner, G.R. Martin. En‐1 and En‐2, two mouse genes with sequence homology to the Drosophila engrailed gene: expression during embryogenesis. Genes Dev. 1: 1987; 29 – 38; R. Kalinec, G. Kalinec, B. Kachar. Development of organ of Corti and stria vascularis cell lines from transgenic mice 19th ARO Midwinter Meeting. 1996, Abstr. 577; Kavka A. I., Baizer L., Gutmann D. H. and Barald, K. F. Differential expression of neurofibromatosis I ( NF, 1) message and protein during neural crest cell migration and differentiation (submitted).; Kavka, A. L, Shih, T. S., Jacks, T. and Barald, K. F. Neurofibromin affects the differentiation of embryonic stem cells into early neurons (submitted).; M.W. Kelley, X.M. Xu, M.A. Wagner, M.E. Warchol, J.T. Corwin. The developing organ of Corti contains retinoic acid and forms supernumerary hair cells in response to erogenous retinoic acid in culture. Development. 119: 1993; 1041 – 1053; T.R. Kershaw, F. Rashid‐Doubell, J.D. Sinden. Immunocharacterisation of H‐2Kb‐tsA58 transgenic mouse hippocampal neuroepithelial cells. NeuroReport. 5: 1994; 2197 – 2200; C.W. Li, T.R. Van De Water, R.J. Ruben. The fate mapping of the eleventh and twelfth day mouse otocyst: an in vitro study of the sites of origin of the embryonic inner ear sensory structures. J. Morphol. 157: 1978; 249 – 267

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    Academic Journal

    وصف الملف: text

    Relation: International Conference Escape, Evacuation & Rescue Design for the Future, 19 & 20 November 1996, London, UK, Publication date: 1996; report_number:IR-1996-23

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    Academic Journal

    المؤلفون: Spencer, D., Hardiman, K. C.

    مصطلحات موضوعية: ice resistance, lateral pressure, model tests

    وصف الملف: text

    Relation: 12th International Conference on Port and Ocean Engineering Under Arctic Conditions, 17-20 August 1993, Hamburg, Germany, Publication date: 1993; report_number:IR-1993-13