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URBER: Ultrafast Rule-Based Escape Routing Method for Large-Scale Sample Delivery Biochips

机译:优步:基于超快的基于规则的Rurece转义路由方法,用于大型样品交付生物芯片

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In high-throughput drug screening applications, as manual drug sample delivery is time-consuming and error-prone, there is an urgent need for accurate and efficient drug sample delivery biochip for large-scale microwell arrays. This paper proposes a new microfluidic biochip architecture, where drugs are automatically prepared with different concentration values, and then delivered into multiple microwells. For large-scale drug sample delivery biochips, the routing of drug sample delivery channels is a very challenging task without effective routing solutions. This paper proposes an ultrafast rule-based escape routing method, called URBER, to address the large-scale routing of drug sample delivery channels, which scales well in both runtime and memory even for a very large problem size. URBER runs very fast because it routes channels based on a set of predefined rules, which avoids runtime consumed in solution space exploration. All benchmarks for 30 <= N, M <= 100 have been tested, where N and M are the number of columns and rows of the terminal array. Among these benchmarks, about similar to 91.9% are routed with optimal solutions, and the runtime is order of magnitudes faster than optimal min-cost flow-based methods (speedup is from similar to 600 to similar to 340 k). Specifically, for all benchmarks with (M/N) is an element of ((3/4), (4/3)), optimal routing solutions are always obtained. URBER also shows promise of routing large-scale designs with up to 500 k terminals efficiently.
机译:在高通量药物筛查应用中,随着手动药物样品的递送是耗时和容易出错的,迫切需要准确和有效的药物样品递送Biochip,用于大型微孔阵列。本文提出了一种新的微流体Biochip建筑,其中药物自动使用不同的浓度值制备,然后送入多个微孔。对于大规模的药物样品递送生物芯片,药物样品输送通道的路由是一个非常具有挑战性的任务,无需有效的路由解决方案。本文提出了一种超快的基于规则的转义路由方法,称为URBER,以解决药物样本传送通道的大规模路由,即使对于非常大的问题大小,也可以在运行时和内存中展现良好。 Urber运行得非常速度,因为它基于一组预定义规则路由通道,这避免了解决方案空间探索中的运行时。已经测试了30 <= n,m <= 100的所有基准测试,其中n和m是终端阵列的列数和行数。在这些基准中,与91.9%相似,通过最佳解决方案进行路由,并且运行时比最佳最佳成本流量为基础的速度快,加速与600类似于340 k)。具体地,对于(m / n)的所有基准是((3/4),(4/3))的元素,始终获得最佳路由解决方案。 Urober还显示有效地路由大量设计的大规模设计的承诺。

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