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Coupling delay controls synchronized oscillation in the segmentation clock
Nature
◽
10.1038/s41586-019-1882-z
◽
2020
◽
Vol 580
(7801)
◽
pp. 119-123
◽
Cited By ~ 20
Author(s):
Kumiko Yoshioka-Kobayashi
◽
Marina Matsumiya
◽
Yusuke Niino
◽
Akihiro Isomura
◽
Hiroshi Kori
◽
...
Keyword(s):
Segmentation Clock
◽
Coupling Delay
Download Full-text
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References
Faculty Opinions recommendation of Wnt3a plays a major role in the segmentation clock controlling somitogenesis.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.1012575.187201
◽
2003
◽
Author(s):
Scott Holley
Keyword(s):
Segmentation Clock
Download Full-text
Faculty Opinions recommendation of Wnt3a plays a major role in the segmentation clock controlling somitogenesis.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.1012575.186277
◽
2003
◽
Author(s):
Patrick Tam
Keyword(s):
Segmentation Clock
Download Full-text
Faculty Opinions recommendation of A complex oscillating network of signaling genes underlies the mouse segmentation clock.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.1052872.510917
◽
2007
◽
Author(s):
Patrick Tam
Keyword(s):
Segmentation Clock
Download Full-text
Faculty Opinions recommendation of Synchrony dynamics during initiation, failure, and rescue of the segmentation clock.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.1104593.560648
◽
2008
◽
Author(s):
Olivier Pourquie
Keyword(s):
Segmentation Clock
Download Full-text
Faculty Opinions recommendation of Dynamics of the slowing segmentation clock reveal alternating two-segment periodicity.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.725496076.793541537
◽
2018
◽
Author(s):
Isabel Palmeirim
Keyword(s):
Segmentation Clock
Download Full-text
Faculty Opinions recommendation of Recapitulating the human segmentation clock with pluripotent stem cells.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.737659736.793573556
◽
2020
◽
Author(s):
Malcolm Maden
Keyword(s):
Stem Cells
◽
Pluripotent Stem Cells
◽
Segmentation Clock
◽
Human Segmentation
Download Full-text
New delay-dependent synchronization criteria of complex dynamical networks with time-varying coupling delay based on sampled-data control via new integral inequality
IEEE Access
◽
10.1109/access.2021.3076361
◽
2021
◽
pp. 1-1
Author(s):
Arthit Hongsri
◽
Thongchai Botmart
◽
Wajaree Weera
◽
Prem Junsawang
Keyword(s):
Integral Inequality
◽
Complex Dynamical Networks
◽
Time Varying
◽
Sampled Data
◽
Dynamical Networks
◽
Coupling Delay
◽
Data Control
◽
Sampled Data Control
◽
Delay Dependent
Download Full-text
Fault estimation and synchronization control for complex dynamical networks with time‐varying coupling delay
International Journal of Robust and Nonlinear Control
◽
10.1002/rnc.5388
◽
2021
◽
Author(s):
Rathinasamy Sakthivel
◽
Ramalingam Sakthivel
◽
Oh‐Min Kwon
◽
Boomipalagan Kaviarasan
Keyword(s):
Complex Dynamical Networks
◽
Synchronization Control
◽
Fault Estimation
◽
Time Varying
◽
Dynamical Networks
◽
Coupling Delay
Download Full-text
13-P072 Interfering with Wnt signalling alters the periodicity of the segmentation clock
Mechanisms of Development
◽
10.1016/j.mod.2009.06.545
◽
2009
◽
Vol 126
◽
pp. S216
Author(s):
Sarah Gibb
◽
Kim Dale
Keyword(s):
Wnt Signalling
◽
Segmentation Clock
Download Full-text
Lunatic fringe protein processing by proprotein convertases may contribute to the short protein half-life in the segmentation clock
Biochimica et Biophysica Acta (BBA) - Molecular Cell Research
◽
10.1016/j.bbamcr.2008.07.009
◽
2008
◽
Vol 1783
(12)
◽
pp. 2384-2390
◽
Cited By ~ 24
Author(s):
Emily T. Shifley
◽
Susan E. Cole
Keyword(s):
Half Life
◽
Protein Processing
◽
Segmentation Clock
◽
Proprotein Convertases
◽
Lunatic Fringe
◽
Short Protein
Download Full-text
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