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More effective randomly-designed microfluidics
Conference paper

More effective randomly-designed microfluidics

Weiqing Ji, Tsung-Yi Ho and Hailong Yao
Proceedings of IEEE Computer Society Annual Symposium on VLSI, ISVLSI, Vol.2018-July, pp.660-665
08/2018

Abstract

Concentration generation Finite element analysis Microfluidic biochips Random design Hardware and Architecture Control and Systems Engineering Electrical and Electronic Engineering
Random design of microfluidics is gaining significant attention by creating functional microfluidic chips. Notable merit of random design is that the error-prone design stage is avoided by a library of random chips, which are simulated beforehand using finite element analysis. This paper proposes a methodology for more effective random chip designs, which further optimizes the random chip library to significantly reduce sample consumption. The random design optimization method can be separately loaded as a stand-Alone tool and applied to the original chips from the library. Computational simulation results show that the proposed method greatly reduces sample consumption by more than 20% on average in terms of redundant channels. Moreover, the induced deviations in concentrations are mostly less than 0.002, which are negligible in real biomedical applications.

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