DocumentCode
704003
Title
Volume-oriented sample preparation for reactant minimization on flow-based microfluidic biochips with multi-segment mixers
Author
Chi-Mei Huang ; Chia-Hung Liu ; Juinn-Dar Huang
Author_Institution
Dept. of Electron. Eng. & Inst. of Electron., Nat. Chiao Tung Univ., Hsinchu, Taiwan
fYear
2015
fDate
9-13 March 2015
Firstpage
1114
Lastpage
1119
Abstract
Sample preparation is one of essential processes in most biochemical reactions. In this process, raw reactants are diluted to achieve given target concentrations. So far, most of existing sample preparation techniques only consider mixing of two source solutions under the (1:1) mixing model. In this paper, we propose the first sample preparation algorithm VOSPA that not only blends several (≥ 2) solutions in a dilution operation but also allows various mixing models on flow-based microfluidic biochips with multi-segment mixers. VOSPA is a volume-oriented sample preparation algorithm that enables segment-based intermediate solution reuse for better reactant minimization. Experimental results show that VOSPA can lower the reactant consumption and operation count by 72% and 59% as compared to the baseline bit-scanning method if an 8-segment mixer is used. Moreover, VOSPA outperforms an optimal algorithm, which merely allows the use of (1:1) mixing model; the reactant usage and operation count can be further reduced by 37% and 76%.
Keywords
bioMEMS; biochemistry; lab-on-a-chip; microfluidics; 8-segment mixer; baseline bit-scanning method; biochemical reaction; flow-based microfluidic biochip; multisegment mixers; operation count; raw reactant; reactant consumption; reactant minimization; segment-based intermediate solution reuse; volume-oriented sample preparation algorithm; Automation; Biological system modeling; Microfluidics; Minimization; Mixers; Optimized production technology; Valves; Biochip; dilution; flow-based microfluidic biochip; mixing model; reactant minimization; sample preparation;
fLanguage
English
Publisher
ieee
Conference_Titel
Design, Automation & Test in Europe Conference & Exhibition (DATE), 2015
Conference_Location
Grenoble
Print_ISBN
978-3-9815-3704-8
Type
conf
Filename
7092555
Link To Document