We report a medium throughput device to study the effects of combinations of two mechanical stimuli - surface strains and fluid flow shear stresses, on cells. The first generation prototype can screen combinations of five strain and five shear stress levels. Computational modeling and empirical measurements were used to determine the generated strains and flows. Uniform equibiaxial strains up to 20% and shear stresses up to 0.3 Pa can be generated. Compatibility of the device with cell culture and end point fixation, staining and imaging is shown using C2C12 mouse myoblast cells
Mechanical loading alters cellular responses. While in vitro mechanical stimulation is a powerful to...
In vitro quantification of the effect of mechanical loads on cells by live microscopy requires preci...
An effect of the flow on migration and on deformation of cultured cells has been studied in vitro. A...
We report a medium throughput device to study the effects of combinations of two mechanical stimuli ...
Shear stresses are known to influence the morphology, and even the fate, of many cell types, includi...
An experimental system of the Couette type flow with a rotating disk has been designed to apply wall...
A widely used commercially available system for the investigation of mechanosensitivity applies a bi...
We have developed an integrated strain array for cell culture enabling high-throughput mechano-trans...
Interstitial fluid flow (IFF) within the extracellular matrix (ECM) produces low magnitude shear str...
Interstitial fluid flow (IFF) within the extracellular matrix (ECM) produces low magnitude shear str...
Mechanical stimuli interfere with cellular behaviors under many physiological conditions. To underst...
This thesis describes the development and validation of medium throughput combinatorial screening pl...
Mesenchymal Stem Cells (MSC) are multipotent stem cells that are predominantly obtained from the bon...
Several devices which can apply biomechanical stresses, such as shear stress, to living cells are av...
A murine hybridoma was subjected to constant shear rates within a couette viscometer for periods of ...
Mechanical loading alters cellular responses. While in vitro mechanical stimulation is a powerful to...
In vitro quantification of the effect of mechanical loads on cells by live microscopy requires preci...
An effect of the flow on migration and on deformation of cultured cells has been studied in vitro. A...
We report a medium throughput device to study the effects of combinations of two mechanical stimuli ...
Shear stresses are known to influence the morphology, and even the fate, of many cell types, includi...
An experimental system of the Couette type flow with a rotating disk has been designed to apply wall...
A widely used commercially available system for the investigation of mechanosensitivity applies a bi...
We have developed an integrated strain array for cell culture enabling high-throughput mechano-trans...
Interstitial fluid flow (IFF) within the extracellular matrix (ECM) produces low magnitude shear str...
Interstitial fluid flow (IFF) within the extracellular matrix (ECM) produces low magnitude shear str...
Mechanical stimuli interfere with cellular behaviors under many physiological conditions. To underst...
This thesis describes the development and validation of medium throughput combinatorial screening pl...
Mesenchymal Stem Cells (MSC) are multipotent stem cells that are predominantly obtained from the bon...
Several devices which can apply biomechanical stresses, such as shear stress, to living cells are av...
A murine hybridoma was subjected to constant shear rates within a couette viscometer for periods of ...
Mechanical loading alters cellular responses. While in vitro mechanical stimulation is a powerful to...
In vitro quantification of the effect of mechanical loads on cells by live microscopy requires preci...
An effect of the flow on migration and on deformation of cultured cells has been studied in vitro. A...