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首页> 外文期刊>Journal of Biomechanical Science and Engineering >Fluid Dynamics and Electrical Detection of λDNA in Electrode-Embedded Nanochannels
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Fluid Dynamics and Electrical Detection of λDNA in Electrode-Embedded Nanochannels

机译:电极嵌入纳米通道中λDNA的流体动力学和电学检测

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摘要

References(23) Cited-By(3) In the present study, we address theoretical approaches for the experimental results to investigate the flow dynamics of λDNA through a nanochannel in which two nanoelectrodes are integrated. In order to elucidate the relationship between the longitudinal ionic current and the electrophoresis of λDNA in the specific microanofluidics, we develop a theoretical model for the macroscopic fluid dynamics in a Lagrangian framework. The measured current change associated with a single molecule translocation through the channel is explained by the principle of the Coulter counter that allowed to predict the conformation of λDNA. We also analyze the local velocity of λDNA passing through a nanoscaled confined channel. A result from the model is in considerable agreement with the experimental observations for the electrophoretic flow of λDNA. The basic knowledge obtained here may be useful in developing electrical methods for controlling the electrophoretic velocity of single-molecule DNA for realizing the nanopore sequencer.
机译:参考文献(23)Cited-By(3)在本研究中,我们提出用于实验结果的理论方法,以研究λDNA通过集成有两个纳米电极的纳米通道的流动动力学。为了阐明特定微/纳米流体中的纵向离子电流与λDNA电泳之间的关系,我们为拉格朗日框架中的宏观流体动力学建立了理论模型。通过库尔特计数器的原理解释了与通过通道易位的单个分子相关的测量到的电流变化,该原理允许预测λDNA的构象。我们还分析了通过纳米级受限通道的λDNA的局部速度。该模型的结果与λDNA电泳流程的实验观察结果非常吻合。此处获得的基本知识可能对开发用于控制单分子DNA电泳速度以实现纳米孔测序仪的电学方法有用。

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