Genetic oscillations. A Doppler effect in embryonic pattern formation.
about
Timing by rhythms: Daily clocks and developmental rulersR(2)OBBIE-3D, a Fast Robotic High-Resolution System for Quantitative Phenotyping of Surface Geometry and Colour-TextureFaster embryonic segmentation through elevated Delta-Notch signalling.Live imaging-based model selection reveals periodic regulation of the stochastic G1/S phase transition in vertebrate axial developmentDelta-Notch signalling in segmentationMechanics of tissue compaction.Dynamics of the slowing segmentation clock reveal alternating two-segment periodicity.Generation of dispersed presomitic mesoderm cell cultures for imaging of the zebrafish segmentation clock in single cellsMultiple roles of timing in somite formationA balance of positive and negative regulators determines the pace of the segmentation clockPersistence, period and precision of autonomous cellular oscillators from the zebrafish segmentation clock.Signalling dynamics in vertebrate segmentation.Genetic oscillators in development.A framework for quantification and physical modeling of cell mixing applied to oscillator synchronization in vertebrate somitogenesis.Determining the impact of cell mixing on signaling during development.Continuum theory of gene expression waves during vertebrate segmentation.Changing cell behaviours during beetle embryogenesis correlates with slowing of segmentation.The brain is required for normal muscle and nerve patterning during early Xenopus development.Spatiotemporal oscillations of Notch1, Dll1 and NICD are coordinated across the mouse PSM.Shared rules of development predict patterns of evolution in vertebrate segmentation.Anteroposterior polarity and elongation in the absence of extra-embryonic tissues and of spatially localised signalling in gastruloids: mammalian embryonic organoids.Chemical waves in cell and developmental biology.Recent advances in understanding vertebrate segmentation.AFM and Microrheology in the Zebrafish Embryo Yolk Cell.Modulation of Phase Shift between Wnt and Notch Signaling Oscillations Controls Mesoderm Segmentation.Reentrant Phase Transitions and Non-Equilibrium Dynamics in Membraneless Organelles.Segmentation of the zebrafish axial skeleton relies on notochord sheath cells and not on the segmentation clock.Temporal development of embryos is highly robust across a wide temperature range
P2860
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P2860
Genetic oscillations. A Doppler effect in embryonic pattern formation.
description
2014 nî lūn-bûn
@nan
2014 թուականի Յուլիսին հրատարակուած գիտական յօդուած
@hyw
2014 թվականի հուլիսին հրատարակված գիտական հոդված
@hy
2014年の論文
@ja
2014年論文
@yue
2014年論文
@zh-hant
2014年論文
@zh-hk
2014年論文
@zh-mo
2014年論文
@zh-tw
2014年论文
@wuu
name
Genetic oscillations. A Doppler effect in embryonic pattern formation.
@ast
Genetic oscillations. A Doppler effect in embryonic pattern formation.
@en
Genetic oscillations. A Doppler effect in embryonic pattern formation.
@nl
type
label
Genetic oscillations. A Doppler effect in embryonic pattern formation.
@ast
Genetic oscillations. A Doppler effect in embryonic pattern formation.
@en
Genetic oscillations. A Doppler effect in embryonic pattern formation.
@nl
prefLabel
Genetic oscillations. A Doppler effect in embryonic pattern formation.
@ast
Genetic oscillations. A Doppler effect in embryonic pattern formation.
@en
Genetic oscillations. A Doppler effect in embryonic pattern formation.
@nl
P2093
P2860
P50
P356
P1433
P1476
Genetic oscillations. A Doppler effect in embryonic pattern formation.
@en
P2093
Andrew C Oates
Daniele Soroldoni
David L Richmond
Luis G Morelli
P2860
P304
P356
10.1126/SCIENCE.1253089
P407
P577
2014-07-01T00:00:00Z