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La ricerca find articoli where soggetti phrase all words 'PARAXIAL MESODERM' sort by level,fasc_key/DESCEND, pagina_ini_num/ASCEND ha restituito 194 riferimenti
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    1. Kozmik, Z; Holland, LZ; Schubert, M; Lacalli, TC; Kreslova, J; Vlcek, C; Holland, ND
      Characterization of amphioxus AmphiVent, an evolutionarily conserved marker for chordate ventral mesoderm

      GENESIS
    2. Saga, Y; Takeda, H
      The making of the somite: Molecular events in vertebrate segmentation

      NATURE REVIEWS GENETICS
    3. Lopez-Sanchez, C; Garcia-Martinez, V; Schoenwolf, GC
      Localization of cells of the prospective neural plate, heart and somites within the primitive streak and epiblast of avian embryos at intermediate primitive-streak stages

      CELLS TISSUES ORGANS
    4. Mina, M
      Morphogenesis of the medial region of the developing mandible is regulatedby multiple signaling pathways

      CELLS TISSUES ORGANS
    5. Pourquie, O
      Vertebrate somitogenesis

      ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY
    6. Schubert, FR; Tremblay, P; Mansouri, A; Faisst, AM; Kammandel, B; Lumsden, A; Gruss, P; Dietrich, S
      Early mesodermal phenotypes in Splotch suggest a role for Pax3 in the formation of epithelial somites

      DEVELOPMENTAL DYNAMICS
    7. Chen, JCJ; Love, CM; Goldhamer, DJ
      Two upstream enhancers collaborate to regulate the spatial patterning and timing of MyoD transcription during mouse development

      DEVELOPMENTAL DYNAMICS
    8. Gaunt, SJ
      Gradients and forward spreading of vertebrate Hox gene expression detectedby using a Hox/lacZ transgene

      DEVELOPMENTAL DYNAMICS
    9. Bailey, P; Holowacz, T; Lassar, AB
      The origin of skeletal muscle stem cells in the embryo and the adult

      CURRENT OPINION IN CELL BIOLOGY
    10. Xue, YZ; Wang, XZ; Li, Z; Gotoh, N; Chapman, D; Skolnik, EY
      Mesodermal patterning defect in mice lacking the Ste20 NCK interacting kinase (NIK)

      DEVELOPMENT
    11. Koizumi, K; Nakajima, M; Yuasa, S; Saga, Y; Sakai, T; Kuriyama, T; Shirasawa, T; Koseki, H
      The role of presenilin 1 during somite segmentation

      DEVELOPMENT
    12. Erter, CE; Wilm, TP; Basler, N; Wright, CVE; Solnica-Krezel, L
      Wnt8 is required in lateral mesendodermal precursors for neural posteriorization in vivo

      DEVELOPMENT
    13. Gavalas, A; Trainor, P; Ariza-McNaughton, L; Krumlauf, R
      Synergy between Hoxa1 and Hoxb1: the relationship between arch patterning and the generation of cranial neural crest

      DEVELOPMENT
    14. Lance-Jones, C; Omelchenko, N; Bailis, A; Lynch, S; Sharma, K
      Hoxd10 induction and regionalization in the developing lumbosacral spinal cord

      DEVELOPMENT
    15. Carvajal, JJ; Cox, D; Summerbell, D; Rigby, PWJ
      A BAC transgenic analysis of the Mrf4/Myf5 locus reveals interdigitated elements that control activation and maintenance of gene expression during muscle development

      DEVELOPMENT
    16. Hirsinger, E; Malapert, P; Dubrulle, J; Delfini, MC; Duprez, D; Henrique, D; Ish-Horowicz, D; Pourquie, O
      Notch signalling acts in postmitotic avian myogenic cells to control MyoD activation

      DEVELOPMENT
    17. Sporle, R
      Epaxial-adaxial-hypaxial regionalisation of the vertebrate somite: evidence for a semitic organiser and a mirror-image duplication

      DEVELOPMENT GENES AND EVOLUTION
    18. Leve, C; Gajewski, M; Rohr, KB; Tautz, D
      Homologues of c-hairy1 (her9) and lunatic fringe in zebrafish are expressed in the developing central nervous system, but not in the presomitic mesoderm

      DEVELOPMENT GENES AND EVOLUTION
    19. Cauthen, CA; Berdougo, E; Sandler, J; Burrus, LW
      Comparative analysis of the expression patterns of Wnts and Frizzleds during early myogenesis in chick embryos

      MECHANISMS OF DEVELOPMENT
    20. Olivera-Martinez, I; Thelu, J; Teillet, MA; Dhouailly, D
      Dorsal dermis development depends on a signal from the dorsal neural tube,which can be substituted by Wnt-1

      MECHANISMS OF DEVELOPMENT
    21. Topczewska, JM; Topczewski, J; Solnica-Krezel, L; Hogan, BLM
      Sequence and expression of zebrafish foxc1a and foxc1b, encoding conservedforkhead/winged helix transcription factors

      MECHANISMS OF DEVELOPMENT
    22. Kume, T; Jiang, HY; Topczewska, JM; Hogan, BLM
      The murine winged helix transcription factors, Foxc1 and Foxc2, are both required for cardiovascular development and somitogenesis

      GENES & DEVELOPMENT
    23. Topczewska, JM; Topczewski, J; Shostak, A; Kume, T; Solnica-Krezel, L; Hogan, BLM
      The winged helix transcription factor Foxc1a is essential for somitogenesis in zebrafish

      GENES & DEVELOPMENT
    24. Du, SJ; Dienhart, M
      Gli2 mediation of Hedgehog signals in slow muscle induction in zebrafish

      DIFFERENTIATION
    25. Jacob, J; Hacker, A; Guthrie, S
      Mechanisms and molecules in motor neuron specification and axon pathfinding

      BIOESSAYS
    26. Graham, A; Smith, A
      Patterning the pharyngeal arches

      BIOESSAYS
    27. Bloch-Zupan, A; Hunter, N; Manthey, A; Gibbins, J
      R-twist gene expression during rat palatogenesis

      INTERNATIONAL JOURNAL OF DEVELOPMENTAL BIOLOGY
    28. Levin, JM; El Andalousi, RAB; Dainat, J; Reyne, Y; Bacou, F
      SFRP2 expression in rabbit myogenic progenitor cells and in adult skeletalmuscles

      JOURNAL OF MUSCLE RESEARCH AND CELL MOTILITY
    29. Maroto, M; Pourquie, O
      A molecular clock involved in somite segmentation

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 51
    30. Kimmel, CB; Miller, CT; Keynes, RJ
      Neural crest patterning and the evolution of the jaw

      JOURNAL OF ANATOMY
    31. Graham, A
      The development and evolution of the pharyngeal arches

      JOURNAL OF ANATOMY
    32. Domingos, PM; Itasaki, N; Jones, CM; Mercurio, S; Sargent, MG; Smith, JC; Krumlauf, R
      The Wnt/beta-catenin pathway posteriorizes neural tissue in Xenopus by an indirect mechanism requiring FGF signalling

      DEVELOPMENTAL BIOLOGY
    33. Gray, M; Moens, CB; Amacher, SL; Eisen, JS; Beattie, CE
      Zebrafish deadly seven functions in neurogenesis

      DEVELOPMENTAL BIOLOGY
    34. Sudo, H; Takahashi, Y; Tonegawa, A; Arase, Y; Aoyama, H; Mizutani-Koseki, Y; Moriya, H; Wilting, J; Christ, B; Koseki, H
      Inductive signals from the somatopleure mediated by bone morphogenetic proteins are essential for the formation of the sternal component of avian ribs

      DEVELOPMENTAL BIOLOGY
    35. Kiefer, JC; Hauschka, SD
      Myf-5 is transiently expressed in nonmuscle mesoderm and exhibits dynamic regional changes within the presegmented mesoderm and somites I-IV

      DEVELOPMENTAL BIOLOGY
    36. Nervi, C; Borello, U; Fazi, F; Buffa, V; Pelicci, PG; Cossu, G
      Inhibition of histone deacetylase activity by trichostatin A modulates gene expression during mouse embryogenesis without apparent toxicity

      CANCER RESEARCH
    37. Trainor, P; Krumlauf, R
      Plasticity in mouse neural crest cells reveals a new patterning role for cranial mesoderm

      NATURE CELL BIOLOGY
    38. Perry, RLS; Rudnicki, MA
      Molecular mechanisms regulating myogenic determination and differentiation

      FRONTIERS IN BIOSCIENCE
    39. Matsuda, M
      Roles of beta-catenin in somitogenesis in rat embryos

      IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
    40. Takahashi, Y; Koizumi, K; Takagi, A; Kitajima, S; Inoue, T; Koseki, H; Saga, Y
      Mesp2 initiates somite segmentation through the Notch signalling pathway

      NATURE GENETICS
    41. Stockdale, FE; Nikovits, W; Christ, B
      Molecular and cellular biology of avian somite development

      DEVELOPMENTAL DYNAMICS
    42. Schnell, S; Maini, PK
      Clock and induction model for somitogenesis

      DEVELOPMENTAL DYNAMICS
    43. Graham, A
      The evolution of the vertebrates - genes and development

      CURRENT OPINION IN GENETICS & DEVELOPMENT
    44. Pourquie, O
      Vertebrate segmentation: is cycling the rule?

      CURRENT OPINION IN CELL BIOLOGY
    45. Sawada, A; Fritz, A; Jiang, YJ; Yamamoto, A; Yamasu, K; Kuroiwa, A; Saga, Y; Takeda, H
      Zebrafish Mesp family genes, mesp-a and mesp-b are segmentally expressed in the presomitic mesoderm, and Mesp-b confers the anterior identity to the developing somites

      DEVELOPMENT
    46. Denetclaw, WF; Ordahl, CP
      The growth of the dermomyotome and formation of early myotome lineages in thoracolumbar somites of chicken embryos

      DEVELOPMENT
    47. Delfini, MC; Hirsinger, E; Pourquie, O; Duprez, D
      Delta 1-activated Notch inhibits muscle differentiation without affecting Myf5 and Pax3 expression in chick limb myogenesis

      DEVELOPMENT
    48. Sela-Donenfeld, D; Kalcheim, C
      Inhibition of noggin expression in the dorsal neural tube by somitogenesis: a mechanism for coordinating the timing of neural crest emigration

      DEVELOPMENT
    49. Hadchouel, J; Tajbakhsh, S; Primig, M; Chang, THT; Daubas, P; Rocancourt, D; Buckingham, M
      Modular long-range regulation of Myf5 reveals unexpected heterogeneity between skeletal muscles in the mouse embryo

      DEVELOPMENT
    50. Daubas, P; Tajbakhsh, S; Hadchouel, J; Primig, M; Buckingham, M
      Myf5 is a novel early axonal marker in the mouse brain and is subjected topost-transcriptional regulation in neurons

      DEVELOPMENT
    51. Schmidt, M; Tanaka, M; Munsterberg, A
      Expression of beta-catenin in the developing chick myotome is regulated bymyogenic signals

      DEVELOPMENT
    52. Nowicki, JL; Burke, AC
      Hox genes and morphological identity: axial versus lateral patterning in the vertebrate mesoderm

      DEVELOPMENT
    53. Summerbell, D; Ashby, PR; Coutelle, O; Cox, D; Yee, SP; Rigby, PWJ
      The expression of Myf5 in the developing mouse embryo is controlled by discrete and dispersed enhancers specific for particular populations of skeletal muscle precursors

      DEVELOPMENT
    54. Miller, CT; Schilling, TF; Lee, KH; Parker, J; Kimmel, CB
      sucker encodes a zebrafish Endothelin-1 required for ventral pharyngeal arch development

      DEVELOPMENT
    55. Mansouri, A; Voss, AK; Thomas, T; Yokota, Y; Gruss, P
      Uncx4.1 is required for the formation of the pedicles and proximal ribs and acts upstream of Pax9

      DEVELOPMENT
    56. Borycki, AG; Brown, AMC; Emerson, CP
      Shh and Wnt signaling pathways converge to control Gli gene activation in avian somites

      DEVELOPMENT
    57. Goldman, DC; Martin, GR; Tam, PPL
      Fate and function of the ventral ectodermal ridge during mouse tail development

      DEVELOPMENT
    58. Dockter, J; Ordahl, CP
      Dorsoventral axis determination in the somite: a re-examination

      DEVELOPMENT
    59. Irving, C; Mason, I
      Signalling by FGF8 from the isthmus patterns anterior hindbrain and establishes the anterior limit of Hox gene expression

      DEVELOPMENT
    60. Koster, M; Dillinger, K; Knochel, W
      Activin A signaling directly activates Xenopus winged helix factors XFD-4/4', the orthologues to mammalian MFH-1

      DEVELOPMENT GENES AND EVOLUTION
    61. Beckers, J; Schlautmann, N; Gossler, A
      The mouse rib-vertebrae mutation disrupts anterior-posterior somite patterning and genetically interacts with a Delta1 null allele

      MECHANISMS OF DEVELOPMENT
    62. Correia, KM; Conlon, RA
      Surface ectoderm is necessary for the morphogenesis of somites

      MECHANISMS OF DEVELOPMENT
    63. Tsai, JN; Lee, CH; Jeng, H; Chi, WK; Chang, WC
      Differential expression of glycogen synthase kinase 3 genes during zebrafish embryogenesis

      MECHANISMS OF DEVELOPMENT
    64. Yoon, JK; Wold, B
      The bHLH regulator pMesogenin1 is required for maturation and segmentationof paraxial mesoderm

      GENES & DEVELOPMENT
    65. Holley, SA; Geisler, R; Nusslein-Volhard, C
      Control of her1 expression during zebrafish somitogenesis by a Delta-dependent oscillator and an independent wave-front activity

      GENES & DEVELOPMENT
    66. Mason, I; Chambers, D; Shamim, H; Walshe, J; Irving, C
      Regulation and function of FGF8 in patterning of midbrain and anterior hindbrain

      BIOCHEMISTRY AND CELL BIOLOGY-BIOCHIMIE ET BIOLOGIE CELLULAIRE
    67. Cossu, G; De Angelis, L; Borello, U; Berarducci, B; Buffa, V; Sonnino, C; Coletta, M; Vivarelli, E; Bouche, M; Lattanzi, L; Tosoni, D; Di Donna, S; Berghella, L; Salvatori, G; Murphy, P; Cusella-de Angelis, MG; Molinaro, M
      Determination, diversification and multipotency of mammalian myogenic cells

      INTERNATIONAL JOURNAL OF DEVELOPMENTAL BIOLOGY
    68. Gaunt, SJ
      Evolutionary shifts of vertebrate structures and Hox expression up and down the axial series of segments: a consideration of possible mechanisms

      INTERNATIONAL JOURNAL OF DEVELOPMENTAL BIOLOGY
    69. Kablar, B; Rudnicki, MA
      Skeletal muscle development in the mouse embryo

      HISTOLOGY AND HISTOPATHOLOGY
    70. Hirsinger, E; Jouve, C; Dubrulle, J; Pourquie, O
      Somite formation and patterning

      INTERNATIONAL REVIEW OF CYTOLOGY - A SURVEY OF CELL BIOLOGY, VOL 198
    71. Eloy-Trinquet, S; Mathis, L; Nicolas, JF
      Retrospective tracing of the developmental lineage of the mouse myotome

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 47
    72. Rawls, A; Wilson-Rawls, J; Olson, EN
      Genetic regulation of somite formation

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 47
    73. Burke, AC
      Hox genes and the global patterning of the somitic mesoderm

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 47
    74. Holley, SA; Nusslein-Volhard, C
      Somitogenesis in zebrafish

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 47
    75. Brand-Saberi, B; Christ, B
      Evolution and development of distinct cell lineages derived from somites

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 48
    76. Monsoro-Burq, AH; Le Douarin, N
      Duality of molecular signaling involved in vertebral chondrogenesis

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 48
    77. Dockter, JL
      Sclerotome induction and differentiation

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 48
    78. Borycki, AG; Emerson, CP
      Multiple tissue interactions and signal transduction pathways control somite myogenesis

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 48
    79. Tajbakhsh, S; Buckingham, M
      The birth of muscle progenitor cells in the mouse: Spatiotemporal considerations

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 48
    80. Fontaine-Perus, L
      Mouse-chick chimera: An experimental system for study of somite development

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 48
    81. Ordahl, CP; Williams, BA; Denetclaw, W
      Determination and morphogenesis in myogenic progenitor cells: An experimental embryological approach

      CURRENT TOPICS IN DEVELOPMENTAL BIOLOGY, VOL 48
    82. Ridgeway, AG; Petropoulos, H; Wilton, S; Skerjanc, IS
      Wnt signaling regulates the function of MyoD and myogenin

      JOURNAL OF BIOLOGICAL CHEMISTRY
    83. Wagner, J; Schmidt, C; Nikowits, W; Christ, B
      Compartmentalization of the somite and myogenesis in chick embryos are influenced by Wnt expression

      DEVELOPMENTAL BIOLOGY
    84. Erives, A; Levine, M
      Characterization of a maternal T-box gene in Ciona intestinalis

      DEVELOPMENTAL BIOLOGY
    85. Pirskanen, A; Kiefer, JC; Hauschka, SD
      IGFs, insulin, Shh, bFGF, and TGF-beta 1 interact synergistically to promote somite myogenesis in vitro

      DEVELOPMENTAL BIOLOGY
    86. Ogasawara, M; Shigetani, Y; Hirano, S; Satoh, N; Kuratani, S
      Pax1/Pax9-related genes in an agnathan vertebrate, Lampetra japonica: Expression pattern of LjPax9 implies sequential evolutionary events toward the gnathostome body plan

      DEVELOPMENTAL BIOLOGY
    87. Yoon, JK; Moon, RT; Wold, B
      The bHLH class protein pMesogenin1 can specify paraxial mesoderm phenotypes

      DEVELOPMENTAL BIOLOGY
    88. Ladher, RK; Church, VL; Allen, S; Robson, L; Abdelfattah, A; Brown, NA; Hattersley, G; Rosen, V; Luyten, FP; Dale, L; Francis-West, PH
      Cloning and expression of the Wnt antagonists Sfrp-2 and Frzb during chickdevelopment

      DEVELOPMENTAL BIOLOGY
    89. Marin, F; Charnay, P
      Positional regulation of Krox-20 and mafB/kr expression in the developing hindbrain: Potentialities of prospective rhombomeres

      DEVELOPMENTAL BIOLOGY
    90. Baranski, M; Berdougo, E; Sandler, JS; Darnell, DK; Burrus, LW
      The dynamic expression pattern of frzb-1 suggests multiple roles in chick development

      DEVELOPMENTAL BIOLOGY
    91. Venters, SJ; Thorsteinsdottir, S; Duxson, MJ
      Early development of the myotome in the mouse

      DEVELOPMENTAL DYNAMICS
    92. Noden, DM; Marcucio, R; Borycki, AG; Emerson, CP
      Differentiation of avian craniofacial muscles: I. Patterns of early regulatory gene expression and myosin heavy chain synthesis

      DEVELOPMENTAL DYNAMICS
    93. Pourquie, O
      Notch around the clock

      CURRENT OPINION IN GENETICS & DEVELOPMENT
    94. Kucharczuk, KL; Love, CM; Dougherty, NM; Goldhamer, DJ
      Fine-scale transgenic mapping of the MyoD core enhancer: MyoD is regulatedby distinct but overlapping mechanisms in myotomal and non-myotomal musclelineages

      DEVELOPMENT
    95. Meng, AM; Moore, B; Tang, H; Yuan, BZ; Lin, S
      A Drosophila doublesex-related gene, terra, is involved in somitogenesis in vertebrates

      DEVELOPMENT
    96. Amthor, H; Christ, B; Patel, K
      A molecular mechanism enabling continuous embryonic muscle growth - a balance between proliferation and differentiation

      DEVELOPMENT
    97. Pituello, F; Medevielle, F; Foulquier, F; Duprat, AM
      Activation of Pax6 depends on somitogenesis in the chick embryo cervical spinal cord

      DEVELOPMENT
    98. Dupe, V; Ghyselinck, NB; Wendling, O; Chambon, P; Mark, M
      Key roles of retinoic acid receptors alpha and beta in the patterning of the caudal hindbrain, pharyngeal arches and otocyst in the mouse

      DEVELOPMENT
    99. Cinnamon, Y; Kahane, N; Kalcheim, C
      Characterization of the early development of specific hypaxial muscles from the ventrolateral myotome

      DEVELOPMENT
    100. Borycki, AG; Brunk, B; Tajbakhsh, S; Buckingham, M; Chiang, C; Emerson, CP
      Sonic hedgehog controls epaxial muscle determination through Myf5 activation

      DEVELOPMENT


ASDD Area Sistemi Dipartimentali e Documentali, Università di Bologna, Catalogo delle riviste ed altri periodici
Documento generato il 03/08/20 alle ore 12:04:20