As a highly viscoelastic liquid, flowing blood exerts a shearing force that has a significant effect on the functioning of vascular endothelial cells (ECs), which regulates the human circulatory system. The first part of the thesis describes a microfluidic device along with a specially formulated media to provide an in-vitro testing microenvironment where cultured endothelial cell layers can be subjected to shearing forces from both stable and unstable flows. Complex and unstable flow patterns are generated within this microchannel device by engineering the viscoelastic properties of the EC culture media without the need of an extensive flow agitation apparatus. In-vitro shearing tests showed significant differences in the responses of Hum...
The vascular system, one of the bases of life mechanisms, connects tissues and organs by means of bl...
What role do high and low wall shear stresses play in the deterioration of arteriole and capillary w...
What role do high and low wall shear stresses play in the deterioration of arteriole and capillary w...
As a highly viscoelastic liquid, flowing blood exerts a shearing force that has a significant effect...
Endothelial cells comprise the inner lining of the entire circulatory system and are key mediators i...
Endothelial cells comprise the inner lining of the entire circulatory system and are key mediators i...
Recent advances in micro- and nanofluidics offer new opportunities to develop novel analytical tools...
Microfluidics is both a science and a technology offering great and perhaps even revolutionary capab...
Recent advances in micro- and nanofluidics offer new opportunities to develop novel analytical tools...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.Includes...
Microfluidics is increasingly being used in many areas of biotechnology and chemistry to achieve red...
The exchange of oxygen and carbon dioxide occurs across the air-blood barrier (or alveolar-capillary...
The exchange of oxygen and carbon dioxide occurs across the air-blood barrier (or alveolar-capillary...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
The vascular system, one of the bases of life mechanisms, connects tissues and organs by means of bl...
The vascular system, one of the bases of life mechanisms, connects tissues and organs by means of bl...
What role do high and low wall shear stresses play in the deterioration of arteriole and capillary w...
What role do high and low wall shear stresses play in the deterioration of arteriole and capillary w...
As a highly viscoelastic liquid, flowing blood exerts a shearing force that has a significant effect...
Endothelial cells comprise the inner lining of the entire circulatory system and are key mediators i...
Endothelial cells comprise the inner lining of the entire circulatory system and are key mediators i...
Recent advances in micro- and nanofluidics offer new opportunities to develop novel analytical tools...
Microfluidics is both a science and a technology offering great and perhaps even revolutionary capab...
Recent advances in micro- and nanofluidics offer new opportunities to develop novel analytical tools...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.Includes...
Microfluidics is increasingly being used in many areas of biotechnology and chemistry to achieve red...
The exchange of oxygen and carbon dioxide occurs across the air-blood barrier (or alveolar-capillary...
The exchange of oxygen and carbon dioxide occurs across the air-blood barrier (or alveolar-capillary...
Endothelial cells (ECs) line all blood contacting surfaces within the body and are exposed to hemody...
The vascular system, one of the bases of life mechanisms, connects tissues and organs by means of bl...
The vascular system, one of the bases of life mechanisms, connects tissues and organs by means of bl...
What role do high and low wall shear stresses play in the deterioration of arteriole and capillary w...
What role do high and low wall shear stresses play in the deterioration of arteriole and capillary w...