During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round, in a process known as mitotic cell rounding (MCR). The aim of this thesis was to critically examine the physical and biological basis of MCR. The experimental part of this thesis employed a combined optical microscope-atomic force microscope (AFM) setup in conjunction with flat tipless cantilevers to analyze cell mechanics, shape and volume. To this end, two AFM assays were developed: the constant force assay (CFA), which applies constant force to cells and measures the resultant height, and the constant height assay (CHA), which confines cell height and measures the resultant force. These assays were deployed to analyze the shape and mecha...
<p>a) Several bio-mechanical aspects of cell proliferation are included in our model. First, the cel...
Little is known about how mitotic cells round against epithelial confinement. Here, we engineer micr...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
Despite the importance of mitotic cell rounding in tissue development and cell proliferation, there ...
Despite the importance of mitotic cell rounding in tissue development and cell proliferation, there ...
Little is known about how mitotic cells round against epithelial confinement. At the beginning of mi...
Mitotic rounding during cell division is critical for preventing daughter cells from inheriting an a...
© 2017 The Author(s). To divide, most animal cells drastically change shape and round up against ext...
Atomic force microscopy (AFM) is a force sensing nanoscopic tool that can be used to undertake a mul...
Mitotic rounding during cell division is critical for preventing daughter cells from inheriting an a...
International audienceThe extent, mechanism, and function of cell volume changes during specific cel...
During mitosis, adherent cells round up, by increasing the tension of the contractile actomyosin cor...
<p>a) Several bio-mechanical aspects of cell proliferation are included in our model. First, the cel...
Little is known about how mitotic cells round against epithelial confinement. Here, we engineer micr...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
During mitosis, adherent animal cells undergo a drastic shape change, from essentially flat to round...
Despite the importance of mitotic cell rounding in tissue development and cell proliferation, there ...
Despite the importance of mitotic cell rounding in tissue development and cell proliferation, there ...
Little is known about how mitotic cells round against epithelial confinement. At the beginning of mi...
Mitotic rounding during cell division is critical for preventing daughter cells from inheriting an a...
© 2017 The Author(s). To divide, most animal cells drastically change shape and round up against ext...
Atomic force microscopy (AFM) is a force sensing nanoscopic tool that can be used to undertake a mul...
Mitotic rounding during cell division is critical for preventing daughter cells from inheriting an a...
International audienceThe extent, mechanism, and function of cell volume changes during specific cel...
During mitosis, adherent cells round up, by increasing the tension of the contractile actomyosin cor...
<p>a) Several bio-mechanical aspects of cell proliferation are included in our model. First, the cel...
Little is known about how mitotic cells round against epithelial confinement. Here, we engineer micr...
It has long been proposed that the cell cycle is regulated by physical forces at the cell-cell and c...