Guiding, controlling and studying cellular functions are challenging themes in the biomedical field, as they are fundamental prerequisites for new therapeutic strategies from tissue regeneration to controlled drug delivery. In recent years, multidisciplinary studies in nanotechnology offer new tools to investigate important biophysical phenomena in response to the local physical characteristics of the extracellular environment, some examples are the mechanisms of cell adhesion, migration, communication and differentiation. Indeed for reproducing the features of the extracellular matrix in vitro, it is essential to develop active devices that evoke as much as possible the natural cellular environment. Our investigation is in the framework of...
The structure, physiology, and fate of living cells are all highly sensitive to mechanical forces in...
Mechanical forces in the cell’s natural environment have a crucial impact on growth and behavior, fr...
Mechanical signals affect virtually every fundamental single- and multi-cellular process in biology....
Guiding, controlling and studying cellular functions are challenging themes in the biomedical field,...
In an attempt to better elucidate the material-cytoskeleton crosstalk during the initial stage of ce...
The accurate study of cellular microenvironments is limited by the lack of technologies that can man...
It is well known that living cells interact mechanically with their microenvironment. Many basic cel...
A modified Mach-Zender set-up in reflection is applied to record and reconstruct holographic amplitu...
In this dissertation, I utilize digital holographic microscopy (DHM) to study the motility of biolog...
Understanding complex interactions between a cell and its extracellular matrix (ECM) lies at the cor...
In biology and biomedical research fields one of the main topic is the understanding of morphology a...
Cellular microenvironments are an important area of study, and their implications with regard to dev...
The accurate study of cellular microenvironments is limited by the lack of technologies that can man...
The structure, physiology, and fate of living cells are all highly sensitive to mechanical forces in...
Mechanical forces in the cell’s natural environment have a crucial impact on growth and behavior, fr...
Mechanical signals affect virtually every fundamental single- and multi-cellular process in biology....
Guiding, controlling and studying cellular functions are challenging themes in the biomedical field,...
In an attempt to better elucidate the material-cytoskeleton crosstalk during the initial stage of ce...
The accurate study of cellular microenvironments is limited by the lack of technologies that can man...
It is well known that living cells interact mechanically with their microenvironment. Many basic cel...
A modified Mach-Zender set-up in reflection is applied to record and reconstruct holographic amplitu...
In this dissertation, I utilize digital holographic microscopy (DHM) to study the motility of biolog...
Understanding complex interactions between a cell and its extracellular matrix (ECM) lies at the cor...
In biology and biomedical research fields one of the main topic is the understanding of morphology a...
Cellular microenvironments are an important area of study, and their implications with regard to dev...
The accurate study of cellular microenvironments is limited by the lack of technologies that can man...
The structure, physiology, and fate of living cells are all highly sensitive to mechanical forces in...
Mechanical forces in the cell’s natural environment have a crucial impact on growth and behavior, fr...
Mechanical signals affect virtually every fundamental single- and multi-cellular process in biology....