34 results on '"Tickle C"'
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2. Distribution of polarizing activity and potential for limb formation in mouse and chick embryos and possible relationships to polydactyly
3. A model for anteroposterior patterning of the vertebrate limb based on sequential long- and short-range Shh signalling and Bmp signalling
4. Expression of ptc and gli genes in talpid 3 suggests bifurcation in Shh pathway*
5. Tbx genes and limb identity in chick embryo development
6. Dorso-ventral ectodermal compartments and origin of apical ectodermal ridge in developing chick limb
7. Relationship between dose, distance and time in Sonic Hedgehog-mediated regulation of anteroposterior polarity in the chick limb
8. Cell fate in the chick limb bud and relationship to gene expression
9. Activation of Fgf-4 and HoxD gene expression by BMP-2 expressing cells in the developing chick limb
10. Expression and regulation of Cek-8, a cell to cell signalling receptor in developing chick limb buds
11. Tissue and cellular patterning of the musculature in chick wings
12. Bone morphogenetic proteins and a signalling pathway that controls patterning in the developing chick limb
13. Experimental analysis of the control of expression of the homeobox-gene Msx-1 in the developing limb and face
14. FGF-4 maintains polarizing activity of posterior limb bud cells in vivo and in vitro
15. Hox-4 gene expression in mouse/chicken heterospecific grafts of signalling regions to limb buds reveals similarities in patterning mechanisms
16. The mis-expression of posterior Hox-4 genes in talpid (ta3) mutant wings correlates with the absence of anteroposterior polarity
17. Retinoic acid and chick limb bud development
18. The role of gap junctions in patterning of the chick limb bud
19. Some clues as to the formation of protrusions by Fundulus deep cells
20. The effect of cell killing by X-irradiation on pattern formation in the chick limb
21. Mechanisms of invasiveness of epithelial tumours: ultrastructure of the interactions of carcinoma cells with embryonic mesenchyme and epithelium
22. Pattern formation in the facial primordia
23. Cell movement and the mechanism of invasiveness: a survey of the behaviour of some normal and malignant cells implanted into the developing chick wing bud
24. Retinoic acid application to chick wing buds leads to a dose-dependent reorganization of the apical ectodermal ridge that is mediated by the mesenchyme
25. Preface
26. Survival of cells implanted in the embryonic chick limb bud: a difference between normal and malignant rat brain cells
27. Cell contacts and sorting out in vivo: the behaviour of some embryonic tissues implanted into the developing chick wing
28. Retinoids reprogramme pre-bud mesenchyme to give changes in limb pattern
29. Retinoic acid and pattern formation in the developing chick wing: SEM and quantitative studies of early effects on the apical ectodermal ridge and bud outgrowth
30. Analysis of upper beak defects in chicken embryos following with retinoic acid
31. Characterization of epithelial domains in the nasal passages of chick embryos: spatial and temporal mapping of a range of extracellular matrix and cell surface molecules during development of the nasal placode
32. Infiltration and survival: the behaviour of normal, invasive cells implanted to the developing chick wing
33. Lumen formation in the developing mouse mammary gland
34. The analysis of spatial distributions in mixed cell populations: a statistical method for detecting sorting out
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