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Multiscale force sensing in development
by
Petridou, Nicoletta I.
, Heisenberg, Carl-Philipp
, Spiró, Zoltán
in
14
/ 631/136/1660
/ 631/136/2086
/ Adhesion
/ Analysis
/ Animals
/ Biochemistry
/ Biological activity
/ Biomechanical Phenomena
/ Cancer Research
/ Cell Biology
/ Cell Differentiation - genetics
/ Cell fate
/ Cellular signal transduction
/ Control systems
/ Developmental Biology
/ Differentiation
/ Embryogenesis
/ Embryonic development
/ Embryonic Development - genetics
/ Embryonic growth stage
/ Feedback
/ Homeostasis - genetics
/ Humans
/ Life Sciences
/ Mechanical stimuli
/ Mechanics (physics)
/ Mechanotransduction
/ Mechanotransduction, Cellular - genetics
/ Medical research
/ Morphogenesis
/ review-article
/ Signaling
/ Spindle Apparatus - metabolism
/ Stem Cells
/ Testing
2017
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Multiscale force sensing in development
by
Petridou, Nicoletta I.
, Heisenberg, Carl-Philipp
, Spiró, Zoltán
in
14
/ 631/136/1660
/ 631/136/2086
/ Adhesion
/ Analysis
/ Animals
/ Biochemistry
/ Biological activity
/ Biomechanical Phenomena
/ Cancer Research
/ Cell Biology
/ Cell Differentiation - genetics
/ Cell fate
/ Cellular signal transduction
/ Control systems
/ Developmental Biology
/ Differentiation
/ Embryogenesis
/ Embryonic development
/ Embryonic Development - genetics
/ Embryonic growth stage
/ Feedback
/ Homeostasis - genetics
/ Humans
/ Life Sciences
/ Mechanical stimuli
/ Mechanics (physics)
/ Mechanotransduction
/ Mechanotransduction, Cellular - genetics
/ Medical research
/ Morphogenesis
/ review-article
/ Signaling
/ Spindle Apparatus - metabolism
/ Stem Cells
/ Testing
2017
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Do you wish to request the book?
Multiscale force sensing in development
by
Petridou, Nicoletta I.
, Heisenberg, Carl-Philipp
, Spiró, Zoltán
in
14
/ 631/136/1660
/ 631/136/2086
/ Adhesion
/ Analysis
/ Animals
/ Biochemistry
/ Biological activity
/ Biomechanical Phenomena
/ Cancer Research
/ Cell Biology
/ Cell Differentiation - genetics
/ Cell fate
/ Cellular signal transduction
/ Control systems
/ Developmental Biology
/ Differentiation
/ Embryogenesis
/ Embryonic development
/ Embryonic Development - genetics
/ Embryonic growth stage
/ Feedback
/ Homeostasis - genetics
/ Humans
/ Life Sciences
/ Mechanical stimuli
/ Mechanics (physics)
/ Mechanotransduction
/ Mechanotransduction, Cellular - genetics
/ Medical research
/ Morphogenesis
/ review-article
/ Signaling
/ Spindle Apparatus - metabolism
/ Stem Cells
/ Testing
2017
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Journal Article
Multiscale force sensing in development
2017
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Overview
In this Review, we will discuss how the interplay and feedback between mechanical and biochemical signals control tissue morphogenesis and cell fate specification in embryonic development.
The seminal observation that mechanical signals can elicit changes in biochemical signalling within cells, a process commonly termed mechanosensation and mechanotransduction, has revolutionized our understanding of the role of cell mechanics in various fundamental biological processes, such as cell motility, adhesion, proliferation and differentiation. In this Review, we will discuss how the interplay and feedback between mechanical and biochemical signals control tissue morphogenesis and cell fate specification in embryonic development.
Publisher
Nature Publishing Group UK,Nature Publishing Group
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