spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Yuan, S.
Right arrow Articles by Schoenwolf, G. C.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Yuan, S.
Right arrow Articles by Schoenwolf, G. C.
Antin, P., Taylor, R. G. and Yatskievych, T (1994). Precardiac mesoderm is specified during gastrulation in quail. Dev. Dynam 200, 144-154.[Medline]

Bally-Cuif, L. and Wassef, M (1995). Determination events in the nervous system of the vertebrate embryo. Curr. Opin. Gene. Dev 5, 450-458.[Medline]

Beddington, R. S. P (1994). Induction of a second neural axis by the mouse node. Development 120, 613-620.[Abstract]

Beddington, R. S. P. and Robertson, E. J (1998). Anterior patterning in mouse. Trends Genetics 14, 277-284.[Medline]

Beddington, R. S. P. and Robertson, E. J (1999). Axis development and early asymmetry in mammals. Cell 96, 195-209.[Medline]

Bernes, G. L., Alexander, P. G., Hsu, C. W., Mariani, B. D. and Tuan, R. S (1997). Cloning and characterization of chicken Paraxis: A regulator of paraxial mesoderm development and somite formation. Dev. Biol 189, 95-111.[Medline]

Bouwmeester, T. and Leyns, L (1997). Vertebrate head induction by anterior primitive endoderm. BioEssays 19, 855-863.[Medline]

Bovolenta, P., Mallamaci, A., Puelles, L. and Boncinelli, E (1998). Expression pattern of cSix3 , a member of the Six/sine oculis family of transcription factors. Mech. Dev 70, 201-203.[Medline]

Bronner-Fraser, M (1986). Analysis of the early stages of trunk neural crest migration in avian embryos using monoclonal antibody HNK-1. Dev. Biol 115, 44-55.[Medline]

Butros, J (1967). Limited axial structures in nodeless chick blastoderms. J. Embryol. exp. Morph 17, 119-130.[Medline]

Charlebois, T. S., Henty, J. H. and Grainger, R. M (1990). Differential cytokeratin gene expression reveals early dorsal-ventral regionalization in chick mesoderm. Development 110, 417-425.[Abstract/Free Full Text]

Crossley, P. H., Martinez, S. and Martin, G. R (1996). Midbrain development induced by fgf8 in the chick embryo. Nature 380, 66-68.[Medline]

Dale, L. and J. M. Slack. ( (1987). Regional specification within the mesoderm of early embryos of Xenopus laevis. Development 100, 279-295.[Abstract/Free Full Text]

Darnell, D. K., Schoenwolf, G. C. and Ordahl, C. P (1992). Changes in dorsoventral but not rostrocaudal regionalization of the chick neural tube in the absence of cranial notochord, as revealed by expression of Engrailed-2. Dev. Dynamics 193, 389-396.[Medline]

Dias, M. S. and Schoenwolf, G. C (1990). Formation of ectopic neurepithelium in chick blastoderms: Age-related capacities for induction and self-differentiation following transplantation of quail Hensen's nodes. Anat. Rec 229, 437-448.

Ericson, J., Morton, S., Kawakami, A., Roelink, H. and Jessell, T. M (1996). Two critical periods of Sonic hedgehog signaling required for the specification of motor neuron identity. Cell 87, 661-673.[Medline]

Gallera, J (1971). Primary induction in birds. Adv. Morphogenesis 9, 149-180.[Medline]

Gallera, J. and Nicolet, G (1974). Regulation in nodeless chick blastoderms. Experientia 30, 183-185.[Medline]

Garcia-Martinez, V. and Schoenwolf, G. C (1992). Positional control of mesoderm movement and fate during avian gastrulation and neurulation. Dev. Dynam 193, 249-256.[Medline]

Garcia-Martinez, V. and Schoenwolf, G. C (1993). Primitive-streak origin of the cardiovascular system in avian embryos. Dev. Biol 159, 706-719.[Medline]

Garcia-Martinez, V., Alvarez, I. S. and Schoenwolf, G. C (1993). Locations of the ectodermal and non-ectodermal subdivisions of the epiblast at stages 3 and 4 of avian gastrulation and neurulation. J. Exp. Zool 267, 431-446.[Medline]

Garcia-Martinez, V., Darnell, D. K., Lopez-Sanchez, C., Sosic, D., Olson, E. N. and Schoenwolf, G. C (1997). State of commitment of prospective neural plate and prospective mesoderm in late gastrula/early neurula stages of avian embryos. Dev. Biol 181, 102-115.[Medline]

Gimlich, R. L. and Gerhart, J. C (1984). Early cellular interactions promote embryonic axis formation in Xenopuslaevis. Dev. Biol 104, 117-30.[Medline]

Giraldez, F (1998). Regionalized organizing activity of the neural tube revealed by the regulation of lmx1 in the otic vesicle. Dev. Biol 203, 189-200.[Medline]

Grabowski, C. T (1956). The effects of the excision of Hensen's node on the early development of the chick embryo. J. Exp. Zool 133, 301-344.

Hamburger, V. and Hamilton, H. L (1951). A series of normal stages in the development of the chick embryo. J. Morph 88, 49-92.

Han, Y., Dennis, J. E., Cohen-Gould, L., Bader, D. M. and Fischman, D. A (1992). Expression of sarcomeric myosin in the presumptive myocardium of chicken embryos occurs within six hours of myocyte commitment. Dev. Dynamics 193, 257-65.[Medline]

Hatada, Y. and Stern, C. D (1994). A fate map of the epiblast of the early chick embryo. Development 120, 2879-2889.[Abstract]

Hemmati-Brivanlou, A., Kelly, O. G. and Melton, D. A (1994). Follistatin, an antagonist of activin, is expressed in the Spemann organizer and displays direct neuralizing activity. Cell 77, 283-295.[Medline]

Herbrand, H., Guthrie, S., Hadrys, T., Hoffmann, S., Arnold, H.-H., Rinkwitz-Brandt, S. and Bober, E (1998). Two regulatory genes, cNkx5.1 and cPax2 , show different responses to local signals during otic placode and vesicle formation in the chick embryo. Development 125, 645-654.[Abstract]

Inagaki, T., Garcia-Martinez, V. and Schoenwolf, G. C (1993). Regulative ability of the prospective cardiogenic and vasculogenic areas of the primitive streak during avian gastrulation. Dev. Dynam 197, 57-68.[Medline]

Kessler, D. S. and Melton, D. A (1994). Vertebrate embryonic induction: mesodermal and neural patterning. Science 262, 596-604.

Lamb, T. M., Knecht, A. K., Smith, W. C., Stachel, S. E., Economides, A. N., Stahl, N., Yancopolous, G. D. and Harland, R. M (1993). Neural induction by the secreted polypeptide Noggin. Science 262, 713-718.[Abstract/Free Full Text]

Lemaire, P. and Kodjabachian, L (1996). The vertebrate organizer: Structure and molecules. Trends Genet 12, 525-531.[Medline]

Levin, M. and Mercola, M (1998). Evolutionary conservation of mechanisms upstream of asymmetric Nodal expression: Reconciling chick and Xenopus. Dev. Genet 23, 185-193.[Medline]

Levin, M., Johnson, R. L., Stern, C. D., Kuehn, M. and Tabin, C (1995). A molecular pathway determining left-right asymmetry in chick embryogenesis. Cell 82, 803-814.[Medline]

Levin, M., Pagan, S., Roberts, D. J., Cooke, J., Kuehn, M. R. and Tabin, C. J (1997). Left-right patterning signals and the independent regulation of different aspects of situs in the chick embryo. Dev. Biol 189, 57-67.[Medline]

Logan, M., Pag\207n-Westphal, S. M., Smith, D. M., Paganessi, L. and Tabin, C. J (1998). The transcription factor Pitx2 mediates situs-specific morphogenesis in response to left-right asymmetric signals. Cell 94, 307-317.[Medline]

New, D. A. T (1955). A new technique for the cultivation of the chick embryo in vitro. J. Embryol. exp. Morphol 3, 326-331.

Nicolet, G (1971). Avian gastrulation. Adv. Morphogenesis 9, 231-262.[Medline]

Nieuwkoop, P. D (1973). The organization center of the amphibian embryo: Its origin, spatial organisation, and morphogenetic action. Adv. Morphogenesis 10, 1-39.[Medline]

Oppenheimer, J. M (1959). Extraembryonic transplantation of sections of the Fundulus embryonic shield. J. Exp. Zool 140, 247-268.

Patel, N. H., Martin-Blanco, E., Coleman, K. G., Poole, S. J., Ellis, M. C., Kornberg, T. B. and Goodman, C. S (1989). Expression of engrailed proteins in arthropods, annelids, and chordates. Cell 58, 955-968.[Medline]

Psychoyos, D. and Stern, C. D (1996). Restoration of the organizer after radical ablation of Hensen's node and the anterior end of the primitive streak in the chick embryo. Development 122, 3263-3273.[Abstract]

Rex, M., Orme, A., Uwanogho, D., Tointon, K., Wigmore, P. M., Sharpe, P. T. and Scotting, P. J (1997). Dynamic expression of chicken Sox2 and Sox3 genes in ectoderm induced to form neural tissue. Dev. Dynamics 209, 323-332.[Medline]

Riddle, R. D., Johnson, R. L., Laufer, E. and Tabin, C (1993). Sonic hedgehog mediates the polarizing activity of the ZPA. Cell 75, 1401-1416.[Medline]

Roelink, H., Augsburger, A., Heemskerk, J., Korzh, V., Norlin, S., Ruiz i Altaba, A., Tanabe, Y., Placzek, M., Edlund, T., Jessell, T. M. and Dodd, J (1994). Floor plate and motor neuron induction by vhh-1 , a vertebrate homolog of hedgehog expressed by the notochord. Cell 76, 761-775.[Medline]

Sasai, Y., Lu, B., Steinbeisser, H. and Robertis, E. M. D (1995). Regulation of neural induction by the Chd and Bmp-4 antagonistic patterning signals in Xenopus. Nature 376, 333-336.[Medline]

Schoenwolf, G. C. and Alvarez, I. S (1991). Specification of neurepithelium and surface epithelium in avian transplantation chimeras. Development 112, 713-722.[Abstract]

Schoenwolf, G. C. and Yuan, S (1995). Experimental analyses of the rearrangement of ectodermal cells during gastrulation and neurulation in avian embryos. Cell Tiss. Res 280, 243-251.[Medline]

Schoenwolf, G. C., Garcia-Martinez, V. and Dias, M. S (1992). Mesodermmovement and fate during avian gastrulation and neurulation. Dev. Dynamics 193, 235-248.[Medline]

Selleck, M. A. J. and Stern, C. D (1992). Commitment of mesoderm cells in Hensen's node of the chick embryo to notochord and somite. Development 114, 403-415.[Abstract]

Shih, J. and Fraser, S. E (1996). Characterizing the Zebrafish organizer: microsurgical analysis at the early-shield stage. Development 122, 1313-1322.[Abstract]

Sive, H. K (1993). The frog princess: A molecular formula for dorsoventral patterning in Xenopus. Genes Dev 7, 1-12.[Free Full Text]

Smith, W. C. and Harland, R. M (1992). Expression cloning of noggin , a new dorsalizing factor localized to the Spemann organizer in Xenopus embryos. Cell 70, 829-840.[Medline]

Smith, J. L. and Schoenwolf, G. C (1989). Notochordal induction of cell wedging in the chick neural plate and its role in neural tube formation. J. Exp. Zool 250, 49-62.[Medline]

Storey, K. G., Crossley, J. M., DeRobertis, E. M., Norris, W. E. and Stern, C. D (1992). Neural induction and regionalisation in the chick embryo. Development 114, 729-741.[Abstract]

Storey, K. G., Selleck, M. A. and Stern, C. D (1995). Neural induction and regionalisation by different subpopulations of cells in Hensen's node. Development 121, 417-428.[Abstract]

Storey, K. G., Goriely, A., Sargent, C. M., Brown, J. M., Burns, H. M. and Heath, J. K (1998). Early posterior neural tissue is induced by FGF in the chick embryo. Development 125, 473-484.[Abstract]

Sugi, Y. and Lough, J (1994). Anterior endoderm is a specific effector of terminal cardiac myocyte differentiation of cells from the embryonic heart forming region. Dev. Dynamics 200, 155-162.[Medline]

Tonegawa, A., Funayama, N., Ueno, N. and Takahashi, Y (1997). Mesodermal subdivision along the mediolateral axis in chicken controlled by different concentrations of BMP-4. Development 124, 1975-1984.[Abstract]

Torres, M., Gomez-Pardo, E. and Gruss, P (1995). Pax2 controls multiple steps of urogenital development. Development 121, 4057-4065.[Abstract]

Torres, M., Gomez-Pardo, E. and Gruss, P (1996). Pax2 contributes to inner ear patterning and optic nerve trajectory. Development 122, 3381-3391.[Abstract]

Waddington, C. H (1932). Experiments on the development of chick and duck embryos, cultivated in vitro. Phil. Trans. R. Soc. Lond. (Biol.) 221, 179-230.

Waterman, A. J (1936). Experiments on young chick embryos cultured in vitro. Proc. Nat. Acad. Sci.USA 22, 1-3.[Free Full Text]

Wilkinson, D. G (1989). Homeobox genes and development of the vertebrate CNS. BioEssays 10, 82-85.[Medline]

Yamada, T., Placzek, M., Tanaka, H., Dodd, J. and Jessell, T. M (1991). Control of cell pattern in the developing nervous system: Polarizing activity of the floor plate and notochord. Cell 64, 635-647.[Medline]

Yamada, G., Mansouri, A., Torres, M., Stuart, E. T., Blum, M., Schultz, M., De Robertis, E. M. and Gruss, P (1995). Targeted mutation of the murine goosecoid gene results in craniofacial defects and neonatal death. Development 121, 2917-2922.[Abstract]

Yuan, S., Darnell, D. K. and Schoenwolf, G. C (1995). Mesodermal patterning during avian gastrulation and neurulation: experimental induction of notochord from non-notochordal precursor cells. Dev. Genetics 17, 38-54.[Medline]

Yuan, S., Darnell, D. K. and Schoenwolf, G. C (1995). Identification of inducing, responding, and suppressing regions in an experimental model of notochord formation in avian embryos. Dev. Biol 172, 567-584.[Medline]

Yuan, S. and Schoenwolf, G. C (1998). De novo induction of the organizer and formation of the primitive streak in an experimental model of notochord reconstitution in avian embryos. Development 125, 201-213.[Abstract]

Yutzey, K. E., Rhee, J. T. and Bader, D (1994). Expression of the atrial-specific myosin heavy chain AMHC1 and the establishment of anteroposterior polarity in the developing chicken heart. Development 120, 871-883.[Abstract]




This article has been cited by other articles:


Home page
DevelopmentHome page
S. C. Chapman, F. R. Schubert, G. C. Schoenwolf, and A. Lumsden
Anterior identity is established in chick epiblast by hypoblast and anterior definitive endoderm
Development, November 1, 2003; 130(21): 5091 - 5101.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
P. Ybot-Gonzalez, P. Cogram, D. Gerrelli, and A. J. Copp
Sonic hedgehog and the molecular regulation of mouse neural tube closure
Development, March 7, 2003; 129(10): 2507 - 2517.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
L Saude, K Woolley, P Martin, W Driever, and D. Stemple
Axis-inducing activities and cell fates of the zebrafish organizer
Development, January 8, 2000; 127(16): 3407 - 3417.
[Abstract] [PDF]


Home page
DevelopmentHome page
J. Charrier, M. Teillet, F Lapointe, and N. Le Douarin
Defining subregions of Hensen's node essential for caudalward movement, midline development and cell survival
Development, January 11, 1999; 126(21): 4771 - 4783.
[Abstract] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Yuan, S.
Right arrow Articles by Schoenwolf, G. C.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Yuan, S.
Right arrow Articles by Schoenwolf, G. C.