Works matching IS 00121592 AND DT 2012 AND VI 54 AND IP 3
Results: 17
Development of larval motor circuits in Drosophila.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 408, doi. 10.1111/j.1440-169X.2012.01347.x
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In vitro recapitulation of neural development using embryonic stem cells: From neurogenesis to histogenesis.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 349, doi. 10.1111/j.1440-169X.2012.01329.x
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Interkinetic nuclear migration: A mysterious process in search of a function.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 306, doi. 10.1111/j.1440-169X.2012.01342.x
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Left column: Upper: ESC-derived Purkinje cells with highly arborized dendrites (red and yellow) and ESC-derived other GABAergic interneurons (green) in long-term culture. See Muguruma and Sasai, pp 349-357. Center: The CNS of the larvalascidian Ciona intestinalis visualized with Kaede green (top) and Kaede red (bottom) fl uorescence. The middle schematicaly illustrates the cell lineage of the CNS. See Sasakura et al., pp 420-437. Bottom: A cortical excitatory neuron extending an axon-like long process in the intermediate zone (magenta). Accumulation of Kif5C560-EGFP in the tip of this process suggests axonal nature of this process. See Hatanaka et al., pp 398-407. Right column: Upper: Most RAX (white) and OTX2 (green) double-expressing cells express only low levels of HES1 (red). In the last retinal progenitor cell cycle, the NOTCH-HES signal pathway becomes inactive, and RAX becomes active to activate Otx2 transcription. See Muranishi et al., pp 341-348. Second: Scanning electron micrograph of a Xenopus laevis embryo in neural tube closure. See Suzuki et al., pp 266-276. Third: Aberrant Venus::UNC-6 localization in muscle cells in unc-18 (e234) mutant C. elegans UNC-6 secretion may require an unknown UNC-18-mediated signal from neurons. See Ogura et al., pp 390-397.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. i, doi. 10.1111/j.1440-169X.2011.01353.x
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Molecular mechanisms of cell shape changes that contribute to vertebrate neural tube closure.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 266, doi. 10.1111/j.1440-169X.2012.01346.x
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Small leucine rich proteoglycan family regulates multiple signalling pathways in neural development and maintenance.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 327, doi. 10.1111/j.1440-169X.2012.01339.x
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Neuronal subtype specification in the cerebellum and dorsal hindbrain.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 317, doi. 10.1111/j.1440-169X.2012.01330.x
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Positional information in neural map development: Lessons from the olfactory system.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 358, doi. 10.1111/j.1440-169X.2012.01334.x
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Control of asymmetric cell division of mammalian neural progenitors.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 277, doi. 10.1111/j.1440-169X.2012.01345.x
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Localization mechanisms of the axon guidance molecule UNC-6/Netrin and its receptors, UNC-5 and UNC-40, in Caenorhabditis elegans.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 390, doi. 10.1111/j.1440-169X.2012.01349.x
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GABAergic interneuron migration and the evolution of the neocortex.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 366, doi. 10.1111/j.1440-169X.2012.01351.x
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Formation of Axon-dendrite polarity in situ: Initiation of axons from polarized and non-polarized cells.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 398, doi. 10.1111/j.1440-169X.2012.01344.x
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An essential role for Rax in retina and neuroendocrine system development.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 341, doi. 10.1111/j.1440-169X.2012.01337.x
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Development and evolution of cerebellar neural circuits.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 373, doi. 10.1111/j.1440-169X.2012.01348.x
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An oblique view on the role of spindle orientation in vertebrate neurogenesis.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 287, doi. 10.1111/j.1440-169X.2012.01350.x
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Ascidians as excellent chordate models for studying the development of the nervous system during embryogenesis and metamorphosis.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 420, doi. 10.1111/j.1440-169X.2012.01343.x
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A 'multicellular' step to understand the development of the nervous system.
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- Development, Growth & Differentiation, 2012, v. 54, n. 3, p. 265, doi. 10.1111/j.1440-169X.2012.01354.x
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