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NANOPORE-BASED SEQUENCING USING VOLTAGE MODE WITH HYBRID MODE STIMULI

机译:基于电压模式和混合模式激励的基于NANOPORE的排序

摘要

A liquid voltage is applied to a first side of a lipid bilayer. The liquid voltage comprises a tag-reading period with a tag-reading voltage that tends to capture a tag into a nanopore in the lipid bilayer and an open-channel period with an open-channel voltage that tends to repel the tag. A pre-charging voltage source is connected to an integrating capacitor and a working electrode on a second side of the lipid bilayer during a pre-charging time period, such that the integrating capacitor and the working electrode are charged to a pre-charging voltage. The pre-charging voltage source is disconnected from the integrating capacitor and the working electrode during an integrating time period, such that a voltage of the integrating capacitor and a voltage of the working electrode may vary as a current flows through the nanopore. The pre-charging time period overlaps with a beginning portion of the tag-reading period.
机译:将液体电压施加到脂质双层的第一侧。液体电压包括具有标签读取电压的标签读取时间段和标签的开放通道时间,其中标签读取电压倾向于将标签捕获到脂质双层中的纳米孔中,所述开放通道时间段具有倾向于排斥标签的开放通道电压。在预充电时间段期间,将预充电电压源连接到脂质双层的第二侧上的积分电容器和工作电极,使得积分电容器和工作电极被充电至预充电电压。在积分时间段期间,预充电电压源与积分电容器和工作电极断开,使得随着电流流过纳米孔,积分电容器的电压和工作电极的电压可以变化。预充电时间段与标签读取时间段的开始部分重叠。

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