AbstractUnderstanding how physical signals guide biological processes requires qualitative and quantitative knowledge of the mechanical forces generated and sensed by cells in a physiologically realistic three-dimensional (3D) context. Here, we used computational modeling and engineered epithelial tissues of precise geometry to define the experimental parameters that are required to measure directly the mechanical stress profile of 3D tissues embedded within native type I collagen. We found that to calculate the stresses accurately in these settings, we had to account for mechanical heterogeneities within the matrix, which we visualized and quantified using confocal reflectance and atomic force microscopy. Using this technique, we were able...
Physical forces generated by cells drive morphologic changes during development and can feedback to ...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
AbstractUnderstanding how physical signals guide biological processes requires qualitative and quant...
Epithelial tissues are present throughout the body, covering surfaces and creating hollow organs. Th...
Epithelial tissues are present throughout the body, covering surfaces and creating hollow organs. Th...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
Many morphogenetic processes involve mechanical rearrangements of epithelial tissues that are driven...
Three dimensional (3D) cell culture is becoming mainstream as it is recognized that many animal cell...
The mechanical micro-environment within a tissue is linked to phenotypic changes of its constituent ...
Living tissues are active, multifunctional materials capable of generating, sensing, withstanding an...
<div><p>Many morphogenetic processes involve mechanical rearrangements of epithelial tissues that ar...
Cellular mechanics drives epithelial morphogenesis, the process wherein cells collectively rearrange...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
Physical forces generated by cells drive morphologic changes during development and can feedback to ...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
AbstractUnderstanding how physical signals guide biological processes requires qualitative and quant...
Epithelial tissues are present throughout the body, covering surfaces and creating hollow organs. Th...
Epithelial tissues are present throughout the body, covering surfaces and creating hollow organs. Th...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
Many morphogenetic processes involve mechanical rearrangements of epithelial tissues that are driven...
Three dimensional (3D) cell culture is becoming mainstream as it is recognized that many animal cell...
The mechanical micro-environment within a tissue is linked to phenotypic changes of its constituent ...
Living tissues are active, multifunctional materials capable of generating, sensing, withstanding an...
<div><p>Many morphogenetic processes involve mechanical rearrangements of epithelial tissues that ar...
Cellular mechanics drives epithelial morphogenesis, the process wherein cells collectively rearrange...
Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedb...
Physical forces generated by cells drive morphologic changes during development and can feedback to ...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...
The self-organization of cells into complex tissues during growth and regeneration is a combination ...