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 Gleizer, L.
Right arrow Articles by Stent, G. S.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Gleizer, L.
Right arrow Articles by Stent, G. S.
Akam, M (1987). The molecular basis for metameric pattern in the Drosophila embryo. Development 101, 1-22.[Abstract]

Akam, M (1989). Hox and HOM: homologous gene clusters in insects and vertebrates. Cell 57, 347-349.[Medline]

Bissen, S. T. and Weisblat, D. A (1987). Early differences between alternate n blast cells in leech embryo. J. Neurobiol 18, 251-269.[Medline]

Blair, S. S (1982). Interactions between mesoderm and ectoderm in segment formation in the embryo of a glossiphoniid leech. Dev. Biol 89, 389-396.[Medline]

Crick, F. H. C. and Lawrence, P. A (1975). Compartments and polyclones in insect development. Science 189, 340-347.[Free Full Text]

Devries, J (1974). Mesoderme, feuillet directeur de l'embryogenese chez le lombricien Eisenia foetida . I. La determination de la metamerie interne. Acta Embryol. Exp 1, 105-117.

Devries, J (1983). The determination of mesodermic metamerism specificity in the embryo of earthworm Eisenia foetida sav. (Effect of bromodeoxyuridine). Arch. Biol 94, 23-40.

Devries, J (1988). Effets de l'azacytidine sur le developpement de la metamerie regionalissee du ver de terre Eisenia foetida . Transdetermination de demi-segments mesodermiques. Arch. Biol 99, 83-110.

Dohle, W. and Scholtz, G (1988). Clonal analysis of the crustacean segment: the discordance between genealogical and segmental borders. Development 104, 147-160.[Abstract]

Fernandez, J (1980). Embryonic development of the glossiphoniid leech Theromyzon rude . Characterization of developmental stages. Dev. Biol 76, 245-262.[Medline]

Giloh, H. and Sedat, J. W (1982). Fluorescence microscopy: Reduced photobleaching of rhodamine and fluorescein protein conjugates by n-propyl gallate. Science 217, 1252-1255.[Abstract/Free Full Text]

Kimmel, C. B., Sepich, D. S. and Trevarrow, B (1988). Development of segmentation in zebrafish. Development 104, 197-207.[Medline]

Lawrence, P. A (1981). The cellular basis of segmentation in insects. Cell 26, 3-10.[Medline]

Loer, C. M., Jellies, J. and Kristan, W. B (1987). Segment-specific morphogenesis of leech Retzius neurons requires particular peripheral targets. J. Neurosci 7, 2630-2638.[Abstract]

Loer, C. M. and Kristan, W. B (1989). Peripheral target choice by homologous neurons during embryogenesis of the medicinal leech. II. Innervation of ectopic reproductive tissue by nonreproductive Retzius cells. J. Neurosci 9, 528-538.[Abstract]

Loer, C. M. and Kristan, W. B (1989). Central synaptic inputs to identified leech neurons are determined by peripheral targets. Science 244, 64-66.[Abstract/Free Full Text]

Martindale, M. Q. and Shankland, M (1988). Developmental origin of segmental differences in the leech ectoderm: survival and differentiation of the distal tubule cell is determined by the host segment. Dev. Biol 125, 290-300.[Medline]

Martindale, M. Q. and Shankland, M (1990). Neuronal competition determines the spatial pattern of neuropeptide expression by identified neurons of the leech. Dev. Biol 125, 290-300.

Martindale, M. Q. and Shankland, M (1990). Intrinsic segmental identity of segmental founder cells of the leech embryo. Nature 347, 672-674.[Medline]

Martinez-Arias, A. and Lawrence, P. A (1985). Parasegments and compartments in the Drosophila embryo. Nature 313, 639-642.[Medline]

McConnell, S. K (1991). The generation of neuronal diversity in the central nervous system. Ann. Rev. Neurosci 14, 269-300.[Medline]

McConnell, S. K. and Kaznowski, C. E (1991). Cell cycle dependence of laminar determination in developing neocortex. Science 254, 282-285.[Abstract/Free Full Text]

Raki\215, P (1974). Neurons in the rhesus monkey visual cortex: Systematic relationship between time of origin and eventual disposition. Science 183, 425-427.[Abstract/Free Full Text]

Shankland, M (1984). Positional determination of supernumerary blast cell death in the leech embryo. Nature 307, 541-543.[Medline]

Shankland, M (1991). Leech segmentation: cell lineage and the formation of complex body patterns. Dev. Biol 144, 221-231.[Medline]

Shankland, M. and Martindale, M. Q (1989). Segmental specificity and lateral asymmetry in the differentiation of developmentally homologous neurons during leech embryogenesis. Dev. Biol 135, 431-448.[Medline]

Shankland, M., Martindale, M. Q., Nardelli-Haefliger, D., Baxter, E. and Price, D. J (1991). Origin of segmental identity in the development of the leech nervous system. Development Supplement 2, 29-38.

Stent, G. S., Kristan, W. B., Torrence, S. A., French, K. A. and Weisblat, D. A (1992). Development of the leech nervous system. Int. Rev. of Neurobiol 33, 109-187.[Medline]

Stern, C., Fraser, S. E., Keynes, R. J. and Primmett, R. N (1988). A cell lineage analysis of segmentation in the chick embryo. Development 104, 231-244.[Medline]

Storey, K. G (1989). Cell lineage and pattern formation in the earthworm embryo. Development 107, 519-532.[Abstract]

Stuart, D. K., Torrence, S. A. and Law, M. I (1989). Leech neurogenesis. I. Positional commitment of neural precursor cells. Dev. Biol 136, 17-39.[Medline]

Tear, G., Bate, C. M. and Martinez-Arias, A (1988). A phylogenetic interpretation of the patterns of gene expression in Drosophila embryos. Development 104, 135-145.

Tear, G., Akam, M. and Martinez-Arias, A (1990). Isolation of an abdominal-A gene from the locust Schistocerca gregaria and its expression during early embryogenesis. Development 110, 915-925.[Abstract/Free Full Text]

Torrence, S. A (1991). Positional cues governing cell migration in leech neurogenesis. Development 111, 993-1005.[Abstract/Free Full Text]

Torrence, S. A., Law, M. I. and Stuart, D. K (1989). Leech neurogenesis. II. Mesodermal control of neuronal patterns. Dev. Biol 136, 40-60.[Medline]

Weisblat, D. A, Harper, G., Stent, G. S. and Sawyer, R. T (1980). Embryonic cell lineages in the nervous system of the glossiphoniid leech Helobdellatriserialis. Dev. Biol 76, 58-78.[Medline]

Weisblat, D. A., Price, D. J. and Wedeen, C. J (1988). Segmentation in leech development. Development 104, 161-168.

Weisblat, D. A. and Shankland, M (1985). Cell lineage and segmentation in the leech. Phil. Trans. Roy. Soc. Lond 312, 39-56.[Medline]

Wilkinson, D. G. and Krumlauf, R (1990). Molecular approaches to the segmentation of the hindbrain. Trends Neurosci 13, 335-339.[Medline]

Wysocka-Diller, J. W., Aisemberg, G. O., Baumgarten, M., Levine, M. and Macagno, E. R (1989). Characterization of a homologue of bithorax-complex genes in the leech Hirudo medicinalis. Nature 341, 760-763.[Medline]




This article has been cited by other articles:


Home page
DevelopmentHome page
S. O. Zhang and D. A. Weisblat
Applications of mRNA injections for analyzing cell lineage and asymmetric cell divisions during segmentation in the leech Helobdella robusta
Development, May 1, 2005; 132(9): 2103 - 2113.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
D. Shain, D. Stuart, F. Huang, and D. Weisblat
Segmentation of the central nervous system in leech
Development, January 2, 2000; 127(4): 735 - 744.
[Abstract] [PDF]


Home page
DevelopmentHome page
J. Nicolas, L Mathis, C Bonnerot, and W Saurin
Evidence in the mouse for self-renewing stem cells in the formation of a segmented longitudinal structure, the myotome
Development, January 9, 1996; 122(9): 2933 - 2946.
[Abstract] [PDF]


Home page
DevelopmentHome page
F. Huang and D. Weisblat
Cell fate determination in an annelid equivalence group
Development, January 6, 1996; 122(6): 1839 - 1847.
[Abstract] [PDF]


Home page
DevelopmentHome page
D Nardelli-Haefliger, A. Bruce, and M Shankland
An axial domain of HOM/Hox gene expression is formed by morphogenetic alignment of independently specified cell lineages in the leech Helobdella
Development, January 7, 1994; 120(7): 1839 - 1849.
[Abstract] [PDF]


Home page
DevelopmentHome page
D Nardelli-Haefliger and M Shankland
Lox10, a member of the NK-2 homeobox gene class, is expressed in a segmental pattern in the endoderm and in the cephalic nervous system of the leech Helobdella
Development, January 7, 1993; 118(3): 877 - 892.
[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 Gleizer, L.
Right arrow Articles by Stent, G. S.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Gleizer, L.
Right arrow Articles by Stent, G. S.