Microfluidic Modeling of Cell Flow & Self-assembly of Gold Nanorods with Different Lengths
The thesis is divided into two parts: (1) microfluidic modeling of blood cell flow in constricted microvasculature and (2) the kinetic study of self-assembly of Au nanorods with different lengths. The passive mechanism of the flow of neutrophils was studied by using poly(dimethyl siloxane) microcha...
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Language: | en_ca |
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2012
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Online Access: | http://hdl.handle.net/1807/35514 |