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Noise and Fluctuations in Nanowire Biosensors

机译:纳米线生物传感器的噪声和涨落

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This work deals with the stochastic simulation of a nanowire biosensor surface and the surrounding liquid domain for DNA detection. The objective is an analysis of the fluctuations and of the biological noise induced by the inherent randomness of the hybridization process at the surface. We consider a coupled system of diffusion-reaction equations to model the movement of DNA oligomers as well as the hybridization processes at the functionalized surface of the sensor. Since analytical solutions cannot be derived, numerical investigation is necessary. Here, we present an algorithm different from the already published one in Tulzer and Heitzinger (2014) and show the non-monotonic behaviour of the variance in certain regimes. The variance determines the detection limit, which is an important quantity for optimal sensor design.
机译:这项工作涉及纳米线生物传感器表面和周围液体域用于DNA检测的随机模拟。目的是分析由杂交过程在表面处的固有随机性引起的波动和生物噪声。我们考虑了扩散反应方程的耦合系统,以对DNA寡聚物的运动以及传感器功能化表面的杂交过程进行建模。由于无法得出解析解,因此必须进行数值研究。在这里,我们提出一种与已经在Tulzer和Heitzinger(2014)中发表的算法不同的算法,并展示在某些情况下方差的非单调行为。方差决定了检测极限,这是优化传感器设计的重要量。

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