[[abstract]]In various physiological activities, cells experience stresses along their in-plane direction when facing substrate deformation. Capability of continuous monitoring elasticity of live cell layers during a period is highly desired to investigate cell property variation during various transformations under normal or disease states. This paper reports time-lapsed measurement of live cell layer in-plane elasticity using a pressure sensor embedded microfluidic device. The sensor converts pressure-induced deformation of a flexible membrane to electrical signals. When cells are cultured on top of the membrane, flexural rigidity of the composite membrane increases and further changes the output electrical signals. In the experiments, hu...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
Cancer is a heterogeneous disease and the number of cancer deaths are rising. To know more about it ...
[[abstract]]In this paper, we develop a microfluidic device with an embedded pressure sensor to stud...
Everyday life physiological functions such as breathing, muscle contraction, and blood circulation r...
An acoustically actuated, bubble-based technique is developed to investigate the deformability of ce...
In the last decade, cell elasticity has been widely investigated as a potential label free indicator...
During the last century, cellular biology has been mostly assessed from the biochemical point of vie...
Cell mechanics is closely related to many cell functions. Recent studies have suggested that the def...
Microfluidic devices have been widely used for cell studies. In this project, a hydrogel-based micro...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
Cancer is a heterogeneous disease and the number of cancer deaths are rising. To know more about it ...
[[abstract]]In this paper, we develop a microfluidic device with an embedded pressure sensor to stud...
Everyday life physiological functions such as breathing, muscle contraction, and blood circulation r...
An acoustically actuated, bubble-based technique is developed to investigate the deformability of ce...
In the last decade, cell elasticity has been widely investigated as a potential label free indicator...
During the last century, cellular biology has been mostly assessed from the biochemical point of vie...
Cell mechanics is closely related to many cell functions. Recent studies have suggested that the def...
Microfluidic devices have been widely used for cell studies. In this project, a hydrogel-based micro...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
We have developed a novel experimental set-up that simultaneously, (i) applies static and dynamic de...
Cancer is a heterogeneous disease and the number of cancer deaths are rising. To know more about it ...