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Stresses at the cell surface during animal cell morphogenesis
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scientific article published on May 2014
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videnskabelig artikel
(da)
article científic
(ca)
articol științific
(ro)
articolo scientifico
(it)
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artículu científicu espublizáu en 2014
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наукова стаття, опублікована в травні 2014
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scientific article published on May 2014
(en)
scientific article published on May 2014
(en-ca)
scientific article published on May 2014
(en-gb)
publication date
wds:Q38213231-F74503AA-F0AB-4C67-BAC5-5C4C1CC9A737
publication date
2014-05-01 00:00:00Z
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language of work or name
wds:Q38213231-83B47982-E0F1-4996-99E2-C76F194D8A12
language of work or name
English
author name string
wds:Q38213231-4E5EAB8B-AA78-4582-9054-6601CE51171B
author name string
Ortrud Wartlick
rdfs:label
Stresses at the cell surface during animal cell morphogenesis
(en)
Stresses at the cell surface during animal cell morphogenesis
(nl)
Stresses at the cell surface during animal cell morphogenesis
(ast)
skos:prefLabel
Stresses at the cell surface during animal cell morphogenesis
(en)
Stresses at the cell surface during animal cell morphogenesis
(nl)
Stresses at the cell surface during animal cell morphogenesis
(ast)
name
Stresses at the cell surface during animal cell morphogenesis
(en)
Stresses at the cell surface during animal cell morphogenesis
(nl)
Stresses at the cell surface during animal cell morphogenesis
(ast)
author
wds:Q38213231-3DE86484-BBB7-4584-BA4B-F6EFE15BB4EF
wds:Q38213231-665179B1-3038-4978-BBE3-9E8319E12F78
wds:Q38213231-8A3AEB8C-4EE3-4915-91E1-9F8C3206C86A
author
Ewa Paluch
Guillaume Salbreux
Andrew G Clark
title
wds:Q38213231-DE986FB4-8E30-4439-86B5-71BFF48637F8
title
Stresses at the cell surface during animal cell morphogenesis
(en)
page(s)
wds:Q38213231-ACF7B341-11A6-4120-8AFF-D62248AD4079
page(s)
R484-94
instance of
wds:Q38213231-B3D19AF1-074B-47EC-BCEA-565A250F62E6
instance of
scholarly article
main subject
wds:Q38213231-17B884CE-18E3-4479-ADB6-F1A765C2BED3
wds:Q38213231-2089BC3F-E707-41F7-9FD2-3F606FD744A5
main subject
morphogenesis
cell morphogenesis
PubMed ID
wds:Q38213231-4513F526-0D3F-4248-BCED-AF7DA662FC0E
PubMed ID
http://rdf.ncbi.nlm.nih.gov/pubchem/reference/24845681
PubMed ID
24845681
published in
wds:Q38213231-C1C08D14-B477-480F-983F-33DA55023C84
published in
Current Biology
issue
wds:Q38213231-33231DE7-0C32-4454-A3FD-0B78A0AFF8CA
volume
wds:Q38213231-6588B144-336F-4D5B-AF0F-202088AAE73B
issue
10
volume
24
DOI
wds:Q38213231-1717CFF6-742E-49CB-8C4E-89AACAD60FDB
DOI
http://dx.doi.org/10.1016/J.CUB.2014.03.059
DOI
10.1016/J.CUB.2014.03.059
Fatcat ID
wds:Q38213231-392DA016-17CF-45BC-B5AF-8E1D413AF891
Fatcat ID
release_gas45aom6vf3lonlb7qoyqs55e
ResearchGate publication ID
wds:Q38213231-E02FD3B4-E83D-4F41-88C5-D70AD0D6951F
ResearchGate publication ID
262533906
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about
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https://www.wikidata.org/wiki/Special:EntityData/Q38213231
is
cites work
of
Mechanics of tissue compaction
Quantitative nanoscale imaging of orientational order in biological filaments by polarized superresolution microscopy.
Actomyosin Cortical Mechanical Properties in Nonadherent Cells Determined by Atomic Force Microscopy.
Myosin II Activity Softens Cells in Suspension.
Pulsatile cell-autonomous contractility drives compaction in the mouse embryo.
Bistable front dynamics in a contractile medium: Travelling wave fronts and cortical advection define stable zones of RhoA signaling at epithelial adherens junctions
Large-scale microtubule networks contract quite well
Cell Surface Mechanochemistry and the Determinants of Bleb Formation, Healing, and Travel Velocity
Actin cortex architecture regulates cell surface tension.
Actomyosin dynamics drive local membrane component organization in an in vitro active composite layer
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Drosophila Big bang regulates the apical cytocortex and wing growth through junctional tension.
Spatiotemporally Controlled Myosin Relocalization and Internal Pressure Generate Sibling Cell Size Asymmetry
The Mechanics of Mitotic Cell Rounding
Membrane Supply and Demand Regulates F-Actin in a Cell Surface Reservoir
Crosslinkers both drive and brake cytoskeletal remodeling and furrowing in cytokinesis.
Intracellular Delivery by Membrane Disruption: Mechanisms, Strategies, and Concepts
Tissue curvature and apicobasal mechanical tension imbalance instruct cancer morphogenesis
Shape remodeling and blebbing of active cytoskeletal vesicles
Move your microvilli
Force and the spindle: mechanical cues in mitotic spindle orientation
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