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Reliability-Aware Synthesis With Dynamic Device Mapping and Fluid Routing for Flow-Based Microfluidic Biochips., , , , и . IEEE Trans. Comput. Aided Des. Integr. Circuits Syst., 35 (12): 1981-1994 (2016)Crosstalk-Aware Automatic Topology Customization and Optimization for Wavelength-Routed Optical NoCs., , и . IEEE Trans. Comput. Aided Des. Integr. Circuits Syst., 41 (12): 5261-5274 (2022)Columba S: a scalable co-layout design automation tool for microfluidic large-scale integration., , , , , , и . DAC, стр. 163:1-163:6. ACM, (2018)Contamination-Free Switch Design and Synthesis for Microfluidic Large-Scale Integration., , , , и . DATE, стр. 646-651. IEEE, (2022)Cloud Columba: Accessible Design Automation Platform for Production and Inspiration: Invited Paper., , , , и . ICCAD, стр. 1-6. ACM, (2019)Maximizing the Communication Parallelism for Wavelength-Routed Optical Networks-On-Chips., , , и . ASP-DAC, стр. 109-114. IEEE, (2020)Post-route alleviation of dense meander segments in high-performance printed circuit boards., , , и . ICCAD, стр. 713-720. IEEE, (2013)Component-Oriented High-level Synthesis for Continuous-Flow Microfluidics Considering Hybrid-Scheduling., , , , и . DAC, стр. 51:1-51:6. ACM, (2017)Columba: co-layout synthesis for continuous-flow microfluidic biochips., , , , и . DAC, стр. 147:1-147:6. ACM, (2016)Columba 2.0: A Co-Layout Synthesis Tool for Continuous-Flow Microfluidic Biochips., , , , , , , и . IEEE Trans. Comput. Aided Des. Integr. Circuits Syst., 37 (8): 1588-1601 (2018)