Author Correction: Investigating the nature of active forces in tissues reveals how contractile cells can form extensile monolayers (original) (raw)

Investigating the nature of active forces in tissues reveals how contractile cells can form extensile monolayers

Surabhi Sonam

Nature Materials

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Nature of active forces in tissues: how contractile cells can form extensile monolayers

Surabhi Sonam

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Characterizing the mechanics of cultured cell monolayers

Loïc Peter

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Contractile Equilibration of Single Cells to Step Changes in Extracellular Stiffness

Ailey Crow

Biophysical Journal, 2012

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Formation of adherens junctions leads to the emergence of a tissue-level tension in epithelial monolayers

Alicia Daeden

Journal of Cell Science, 2014

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Local Yield and Compliance in Active Cell Monolayers

Benjamin Loewe

Physical Review Letters

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Active Tensile Modulus of an Epithelial Monolayer

Elsa Bazellieres

Physical review letters, 2015

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Shear rheology of a cell monolayer

Albrecht Ott

New Journal of Physics, 2007

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Non-Linear Elasticity of Extracellular Matrices Enables Contractile Cells to Communicate Local Position and Orientation

Laurent Kreplak

PLoS ONE, 2009

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The nature of mitotic forces in epithelial monolayers

sungmin Nam

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A Novel Method to Quantify Mechanical Tension in Cell Monolayers

mehmet cem ates

Biomedizinische Technik/Biomedical Engineering, 2000

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Yield Stress and Compliance in Active Cell Monolayers

Benjamin Loewe

2022

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Emergence of single cell mechanical behavior and polarity within epithelial monolayers drives collective cell migration

Shreyansh Jain

2019

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Sheet migration by wounded monolayers as an emergent property of single-cell dynamics

Michael Bindschadler

Journal of Cell Science, 2007

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Measuring mechanodynamics in an unsupported epithelial monolayer grown at an air-water interface

James harden

Molecular biology of the cell, 2017

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Cell contraction induces long-ranged stress stiffening in the extracellular matrix

Roger D. Kamm

Proceedings of the National Academy of Sciences of the United States of America, 2018

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Universal physical responses to stretch in the living cell

Daniel Navajas

Nature, 2007

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The emergence of extracellular matrix mechanics and cell traction forces as important regulators of cellular self-organization

Georg Duda, Ansgar Petersen

Biomechanics and Modeling in Mechanobiology, 2014

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Spontaneous spatial correlation of elastic modulus in jammed epithelial monolayers observed by AFM

YUKITAKA ISHIMOTO

Biophysical Journal

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Cell Movement Is Guided by the Rigidity of the Substrate

yu wang

Biophysical Journal, 2000

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Fingering instability in spreading epithelial monolayers: roles of cell polarisation, substrate friction and contractile stresses

Luis Alejandro Vindas Bonilla

Soft Matter, 2021

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Collective cell durotaxis emerges from long-range intercellular force transmission

Daniel Navajas

Science (New York, N.Y.), 2016

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The consequence of substrates of large-scale rigidity on actin network tension in adherent cells

Jean-Louis Milan

Computer Methods in Biomechanics and Biomedical Engineering, 2019

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Productive tension: force-sensing and homeostasis of cell–cell junctions

GUILLERMO GOMEZ

Trends in Cell Biology, 2011

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Force-exerting perpendicular lateral protrusions in fibroblastic cell contraction

Karanpreet Singh

Communications Biology, 2020

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Micropatterning tractional forces in living cells

Donald Ingber

Cell Motility and the Cytoskeleton, 2002

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Fibrous nonlinear elasticity enables positive mechanical feedback between cells and ECMs

Xinzeng Feng

Proceedings of the National Academy of Sciences of the United States of America, 2016

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Dynamic protrusive cell behaviour generates force and drives early matrix contraction by fibroblasts

mark eastwood

Experimental Cell Research, 2007

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Traction forces and rigidity sensing regulate cell functions

Melina Ghibaudo

Soft Matter

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Confined Bilayers Passively Regulate Shape and Stress

Margarita Staykova

Physical Review Letters, 2013

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