Two-dimensional (2D) studies have revealed that mechanical forces drive cell migration and can feedback to regulate proliferation, differentiation and the synthesis/remodeling of extracellular matrix (ECM) proteins. Whether these observations can be translated to clinical settings or be utilized for tissue engineering will depend critically on our ability to translate these findings into physiologically relevant three-dimensional (3D) environments. The general goal of this dissertation has been to develop and apply new technologies capable of extending studies of cell and tissue mechanics into 3D environments. In the first project, we measured both shear and normal traction forces exerted by cells cultured on planar substrates. We observed ...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
The investigation of cell-cell and cell-substrate interactions from the perspective of physics is fu...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
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...
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...
Physical forces generated by cells drive morphologic changes during development and can feedback to ...
The specific way in which individual cells coordinate their migratory behaviors during various physi...
Cells are mechanically coupled to the surrounding microenvironment which acts as local physical cues...
Cells are mechanically coupled to the surrounding microenvironment which acts as local physical cues...
A recent goal of tissue engineering has been to develop tissue-equivalent constructs to aid in wound...
The forces cells apply to their surroundings control biological processes such as growth, adhesion, ...
Mechanotransduction between cells and the extracellular matrix regulates major cellular functions in...
Mechanotransduction between cells and the extracellular matrix regulates major cellular functions in...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
The investigation of cell-cell and cell-substrate interactions from the perspective of physics is fu...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
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...
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...
Physical forces generated by cells drive morphologic changes during development and can feedback to ...
The specific way in which individual cells coordinate their migratory behaviors during various physi...
Cells are mechanically coupled to the surrounding microenvironment which acts as local physical cues...
Cells are mechanically coupled to the surrounding microenvironment which acts as local physical cues...
A recent goal of tissue engineering has been to develop tissue-equivalent constructs to aid in wound...
The forces cells apply to their surroundings control biological processes such as growth, adhesion, ...
Mechanotransduction between cells and the extracellular matrix regulates major cellular functions in...
Mechanotransduction between cells and the extracellular matrix regulates major cellular functions in...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...
The investigation of cell-cell and cell-substrate interactions from the perspective of physics is fu...
In this talk I describe our work to understand how cells sense and exert mechanical force across mul...