AbstractIn eukaryotic cells, small changes in cell volume can serve as important signals for cell proliferation, death, and migration. Volume and shape regulation also directly impacts the mechanics of cells and tissues. Here, we develop a mathematical model of cellular volume and pressure regulation, incorporating essential elements such as water permeation, mechanosensitive channels, active ion pumps, and active stresses in the cortex. The model can fully explain recent experimental data, and it predicts cellular volume and pressure for several models of cell cortical mechanics. Moreover, we show that when cells are subjected to an externally applied load, such as in an atomic force microscopy indentation experiment, active regulation of ...
Cell shape is determined by cellular mechanics. Cell deformations in animal cells, such as those req...
This thesis focuses on the important question of whether and how the behavior and fate of biological...
In this work, we developed a method that allows precise control over changes in the size of a cell v...
International audienceMechanics has been a central focus of physical biology in the past decade. In ...
International audienceMechanics has been a central focus of physical biology in the past decade. In ...
International audienceMechanics has been a central focus of physical biology in the past decade. In ...
International audienceMechanics has been a central focus of physical biology in the past decade. In ...
International audienceMechanics has been a central focus of physical biology in the past decade. In ...
AbstractActive contractile forces exerted by eukaryotic cells play significant roles during embryoni...
AbstractActive contractile forces exerted by eukaryotic cells play significant roles during embryoni...
Cells maintain their volume through fine intracellular osmolarity regulation. Osmotic challenges dri...
Cells maintain their volume through fine intracellular osmolarity regulation. Osmotic challenges dri...
Cells maintain their volume through fine intracellular osmolarity regulation. Osmotic challenges dri...
Cells maintain their volume through fine intracellular osmolarity regulation. Osmotic challenges dri...
In this work, I first started with a simple force balance condition for mammalian cell, which is in ...
Cell shape is determined by cellular mechanics. Cell deformations in animal cells, such as those req...
This thesis focuses on the important question of whether and how the behavior and fate of biological...
In this work, we developed a method that allows precise control over changes in the size of a cell v...
International audienceMechanics has been a central focus of physical biology in the past decade. In ...
International audienceMechanics has been a central focus of physical biology in the past decade. In ...
International audienceMechanics has been a central focus of physical biology in the past decade. In ...
International audienceMechanics has been a central focus of physical biology in the past decade. In ...
International audienceMechanics has been a central focus of physical biology in the past decade. In ...
AbstractActive contractile forces exerted by eukaryotic cells play significant roles during embryoni...
AbstractActive contractile forces exerted by eukaryotic cells play significant roles during embryoni...
Cells maintain their volume through fine intracellular osmolarity regulation. Osmotic challenges dri...
Cells maintain their volume through fine intracellular osmolarity regulation. Osmotic challenges dri...
Cells maintain their volume through fine intracellular osmolarity regulation. Osmotic challenges dri...
Cells maintain their volume through fine intracellular osmolarity regulation. Osmotic challenges dri...
In this work, I first started with a simple force balance condition for mammalian cell, which is in ...
Cell shape is determined by cellular mechanics. Cell deformations in animal cells, such as those req...
This thesis focuses on the important question of whether and how the behavior and fate of biological...
In this work, we developed a method that allows precise control over changes in the size of a cell v...