The field of microfluidics has continued to grow steadily since its inception and proven indispensable in the exploration of micron scale phenomenon. It is particularly well suited to tasks where only a small volume of fluid is available or where high throughput is desired. Here we present a simple microfluidic experiment allowing us to observe a large quantity of bioluminescent cells and observe their behavior on an individual basis.Additionally, we present a novel device for measuring the elastic modulus of silicone gels and other transparent polymers. The device was created with the goal of characterizing the mechanical properties of environments used in biological experiments
This report summarizes a survey of several new methods for obtaining mechanical and rheological prop...
This thesis describes the development of a high-throughput approach towards the encapsulation of can...
Here we want to develop a new method of measuring the mechanical response of biomaterials in paralle...
The field of microfluidics has continued to grow steadily since its inception and proven indispensab...
Thin layers of gels with mechanical properties mimicking animal tissues are widely used to study the...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
Microfluidic devices have been widely used for cell studies. In this project, a hydrogel-based micro...
International audienceGels are a functional template for micro-particle fabrication and microbiology...
The field of microfluidics has been advancing with a great pace since its initial implementation in ...
Dinoflagellate bioluminescence serves as a model system for examining mechanosensing by suspended mo...
Microfluidic devices provide a platform for analyzing both natural and synthetic multicellular syste...
The quantification of cellular mechanical properties is of tremendous interest in biology and medici...
Hydrogels are increasingly used as a surrogate extracellular matrix in three-dimensional cell cultur...
There is growing interest in quantifying vascular cell and tissue stiffness. Most measurement approa...
In recent years there has been a growing interest in the use of optical manipulation techniques, suc...
This report summarizes a survey of several new methods for obtaining mechanical and rheological prop...
This thesis describes the development of a high-throughput approach towards the encapsulation of can...
Here we want to develop a new method of measuring the mechanical response of biomaterials in paralle...
The field of microfluidics has continued to grow steadily since its inception and proven indispensab...
Thin layers of gels with mechanical properties mimicking animal tissues are widely used to study the...
Living cells are a fascinating demonstration of nature’s most intricate and well-coordinated microme...
Microfluidic devices have been widely used for cell studies. In this project, a hydrogel-based micro...
International audienceGels are a functional template for micro-particle fabrication and microbiology...
The field of microfluidics has been advancing with a great pace since its initial implementation in ...
Dinoflagellate bioluminescence serves as a model system for examining mechanosensing by suspended mo...
Microfluidic devices provide a platform for analyzing both natural and synthetic multicellular syste...
The quantification of cellular mechanical properties is of tremendous interest in biology and medici...
Hydrogels are increasingly used as a surrogate extracellular matrix in three-dimensional cell cultur...
There is growing interest in quantifying vascular cell and tissue stiffness. Most measurement approa...
In recent years there has been a growing interest in the use of optical manipulation techniques, suc...
This report summarizes a survey of several new methods for obtaining mechanical and rheological prop...
This thesis describes the development of a high-throughput approach towards the encapsulation of can...
Here we want to develop a new method of measuring the mechanical response of biomaterials in paralle...