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Design of Flow Systems for Improved Networking and Reduced Noise in Biomolecular Signal Processing in Biocomputing and Biosensing Applications

机译:在生物计算和生物传感应用中改善生物分子信号处理中的联网并降低噪声的流量系统设计

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摘要

We consider flow systems that have been utilized for small-scale biomolecular computing and digital signal processing in binary-operating biosensors. Signal measurement is optimized by designing a flow-reversal cuvette and analyzing the experimental data to theoretically extract the pulse shape, as well as reveal the level of noise it possesses. Noise reduction is then carried out numerically. We conclude that this can be accomplished physically via the addition of properly designed well-mixing flow-reversal cell(s) as an integral part of the flow system. This approach should enable improved networking capabilities and potentially not only digital but analog signal-processing in such systems. Possible applications in complex biocomputing networks and various sense-and-act systems are discussed.
机译:我们考虑已在二进制操作生物传感器中用于小型生物分子计算和数字信号处理的流量系统。通过设计逆流比色杯并分析实验数据以从理论上提取脉冲形状并揭示其拥有的噪声水平,可以优化信号测量。然后以数字方式进行降噪。我们得出的结论是,可以通过在流系统中添加适当设计的,充分混合的换流池来物理地实现此目的。这种方法应能够提高联网能力,并在此类系统中不仅可能实现数字功能,而且还可能实现模拟信号处理。讨论了在复杂的生物计算网络和各种感官系统中的可能应用。

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