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31 results on '"Jonathan D.W. Clarke"'

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1. Coordinated assembly and release of adhesions builds apical junctional belts during de novo polarisation of an epithelial tube

2. Cadherins regulate nuclear topography and function of developing ocular motor circuitry

3. Extracellular matrix couples the convergence movements of mesoderm and neural plate during the early stages of neurulation

4. Reversible Optogenetic Control of Subcellular Protein Localization in a Live Vertebrate Embryo

5. Generation of the squamous epithelial roof of the 4thventricle

6. Recruitment of postmitotic neurons into the regenerating spinal cord of urodeles

7. Requirement for the zebrafish mid-hindbrain boundary in midbrain polarisation, mapping and confinement of the retinotectal projection*

8. Selective expression of purinoceptor cP2Y1 suggests a role for nucleotide signalling in development of the chick embryo

9. Stability and Plasticity of Neural Crest Patterning and Branchial Arch Hox Code after Extensive Cephalic Crest Rotation

10. Fate map of the developing chick face: Analysis of expansion of facial primordia and establishment of the primary palate

11. Late effects of retinoic acid on neural crest and aspects of rhombomere

12. Ectopic expression of Hoxa-1 in the zebrafish alters the fate of the mandibular arch neural crest and phenocopies a retinoic acid-induced phenotype

13. Exogenous retinoic acid causes specific alterations in the development of the midbrain and hindbrain of the zebrafish embryo including positional respecification of the Mauthner neuron

14. Early phenotypic choices by neuronal precursors, revealed by clonal analysis of the chick embryo hindbrain

15. Segmental repetition of neuronal phenotype sets in the chick embryo hindbrain

16. Focal Electroporation in Zebrafish Embryos and Larvae

17. Hedgehog signalling maintains the optic stalk-retinal interface through the regulation of Vax gene activity

18. A reciprocal relationship between cutaneous nerves and repairing skin wounds in the developing chick embryo

19. The extracellular ATP receptor, cP2Y(1), inhibits cartilage formation in micromass cultures of chick limb mesenchyme

20. In vivo imaging indicates muscle fiber dedifferentiation is a major contributor to the regenerating tail blastema

22. Differential patterning of ventral midline cells by axial mesoderm is regulated by BMP7 and chordin

23. Differential progenitor dispersal and the spatial origin of early neurons can explain the predominance of single-phenotype clones in the chick hindbrain

24. Dorso-ventral ectodermal compartments and origin of apical ectodermal ridge in developing chick limb

25. Relationship between dose, distance and time in Sonic Hedgehog-mediated regulation of anteroposterior polarity in the chick limb

26. Cell movements, neuronal organisation and gene expression in hindbrains lacking morphological boundaries

27. Retinoic acid causes abnormal development and segmental patterning of the anterior hindbrain in Xenopus embryos

28. Neuroanatomical and functional analysis of neural tube formation in notochordless Xenopus embryos; laterality of the ventral spinal cord is lost

29. Progenitor Dispersal and the Origin of Early Neuronal Phenotypes in the Chick Embryo Spinal Cord

30. Cell fate in the chick limb bud and relationship to gene expression

31. Erratum to: Morphogenesis underlying the development of the everted teleost telencephalon

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