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Homogeneous droplet routing in DMFB: An enhanced technique for high performance bioassay implementation

机译:DMFB中的均匀液滴路由:一种用于高性能生物测定实施的增强技术

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摘要

Digital Microfluidic Biochip, a new generation of Lab-on-chip device has emerged in the last decade as a viable alternative for conventional biochemical laboratory applications. The major advantages of such devices are its capabilities of automation, reconfigurability, flexibility, low cost, portability and precision analysis. Among other microfluidic operations droplet routing poses a critical challenge specifically due to the blockages caused by microfluidic modules. In this paper we propose a two stage routing technique for simultaneous routing while resolving issues of blockages and conflicts with other nets. Here we considered routing of homogeneous droplets where instead of crossovers, sharing of route paths among multiple nets are mainly under focus. The proposed method is simulated on two different sets of testbenches namely Benchmark suite I and III respectively. The route performance measured in terms of parameters namely latest arrival time and cell utilization shows considerable improvement with respect to some major contemporary contributions.
机译:在过去的十年中,数字微流控生物芯片(Digital Microfluidic Biochip)已成为新一代的芯片实验室设备,可作为常规生化实验室应用的可行替代品。这种设备的主要优势在于其自动化,可重新配置性,灵活性,低成本,便携性和精确度分析的能力。在其他微流体操作中,液滴路由特别是由于微流体模块引起的阻塞而带来了严峻的挑战。在本文中,我们提出了一种用于同时路由同时解决阻塞和与其他网络冲突的问题的两步路由技术。在这里,我们考虑了均匀液滴的路由,而不是交叉,而是主要关注多个网络之间的路由路径共享。在两个不同的测试平台上分别对基准套件I和III进行了仿真。就一些主要的当代贡献而言,以参数(即最新到达时间和小区利用率)衡量的路由性能显示出相当大的改进。

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