Title :
A progressive-ILP based routing algorithm for cross-referencing biochips
Author :
Yuh, Ping-Hung ; Sapatnekar, Sachin ; Yang, Chia-Lin ; Chang, Yao-Wen
Author_Institution :
Dept. of Comput. Sci. & Inf. Eng., Nat. Taiwan Univ., Taipei
Abstract :
Due to recent advances in microfluidics technology, digital microfluidic biochips and their associated CAD problems have gained much attention, most of which has been devoted to direct-addressing biochips. In this paper, we solve the droplet routing problem under the more scalable cross-referencing biochip paradigm, which uses row/column addressing scheme to activate electrodes. We propose the first droplet routing algorithm that directly solves the problem of routing in cross-referencing biochips. The main challenge of this type of biochips is the electrode interference which prevents simultaneous movement of multiple droplets. We first present a basic integer linear programming (ILP) formulation to optimally solve the droplet routing problem. Due to its complexity, we also propose a progressive ILP scheme to determine the locations of droplets at each time step. Experimental results demonstrate the efficiency and effectiveness of our progressive ILP scheme on a set of practical bio assays.
Keywords :
bioMEMS; biomedical electronics; circuit CAD; integer programming; lab-on-a-chip; linear programming; microfluidics; CAD; bio assays; cross-referencing biochips; digital microfluidic biochips; disease diagnostics; droplet routing problem; electrode interference; integer linear programming formulation; microfluidics technology; progressive-ILP based routing algorithm; Algorithm design and analysis; Control systems; Electrodes; Fluid flow; Interference; Large-scale systems; Microfluidics; Pins; Routing; Transportation; Microfluidics; biochip; progressive-ILP; routing;
Conference_Titel :
Design Automation Conference, 2008. DAC 2008. 45th ACM/IEEE
Conference_Location :
Anaheim, CA
Print_ISBN :
978-1-60558-115-6