International audienceGels are a functional template for micro-particle fabrication and microbiology experiments. The control and knowledge of their mechanical properties is critical in a number of applications, but no simple in situ method exists to determine these properties. We propose a novel microfluidic based method that directly measures the mechanical properties of the gel upon its fabrication. We measure the deformation of a gel beam under a controlled flow forcing, which gives us a direct access to the Young's modulus of the material itself. We then use this method to determine the mechanical properties of poly(ethylene glycol) diacrylate (PEGDA) under various experimental conditions. The mechanical properties of the gel can be hi...
Advances in biomedical and engineering fields have greatly increased the need for understanding of s...
This thesis describes the development of a high-throughput approach towards the encapsulation of can...
Soft hydrogels serving as substrates for cell attachment are used to culture many types of cells. Th...
International audienceGels are a functional template for micro-particle fabrication and microbiology...
Thin layers of gels with mechanical properties mimicking animal tissues are widely used to study the...
Aqueous microgels are distinct entities of soft matter with mechanical signatures that can be differ...
Cell mechanical measurements are gaining increasing interest in biological and biomedical studies. H...
The measurement of the elastic modulus of soft biomaterials via nanoindentation relies on the accura...
Aqueous microgels are distinct entities of soft matter with mechanical signatures that can be differ...
We present a simple method for accessing the elastic properties of microscopic deformable particles....
We present a simple method for accessing the elastic properties of microscopic deformable particles....
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
Hydrogels, porous hydrated polymeric materials, are being increasingly used in biomedical applicatio...
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
Advances in biomedical and engineering fields have greatly increased the need for understanding of s...
This thesis describes the development of a high-throughput approach towards the encapsulation of can...
Soft hydrogels serving as substrates for cell attachment are used to culture many types of cells. Th...
International audienceGels are a functional template for micro-particle fabrication and microbiology...
Thin layers of gels with mechanical properties mimicking animal tissues are widely used to study the...
Aqueous microgels are distinct entities of soft matter with mechanical signatures that can be differ...
Cell mechanical measurements are gaining increasing interest in biological and biomedical studies. H...
The measurement of the elastic modulus of soft biomaterials via nanoindentation relies on the accura...
Aqueous microgels are distinct entities of soft matter with mechanical signatures that can be differ...
We present a simple method for accessing the elastic properties of microscopic deformable particles....
We present a simple method for accessing the elastic properties of microscopic deformable particles....
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
Hydrogels, porous hydrated polymeric materials, are being increasingly used in biomedical applicatio...
The micromechanical properties of soft tissues and materials are of considerable interest for biomed...
Advances in biomedical and engineering fields have greatly increased the need for understanding of s...
This thesis describes the development of a high-throughput approach towards the encapsulation of can...
Soft hydrogels serving as substrates for cell attachment are used to culture many types of cells. Th...