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Microfabricated valveless devices for thermal bioreactions based on diffusion-limited evaporation

机译:基于扩散受限蒸发的用于热生物反应的超细无阀装置

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Microfluidic devices that reduce evaporative loss during thermal bioreactions such as PCR without microvalves have been developed by relying on the principle of diffusion-limited evaporation. Both theoretical and experimental results demonstrate that the sample evaporative loss can be reduced by more than 20 times using long narrow diffusion channels on both sides of the reaction region. In order to further suppress the evaporation, the driving force for liquid evaporation is reduced by two additional techniques: decreasing the interfacial temperature using thermal isolation and reducing the vapor concentration gradient by replenishing water vapor in the diffusion channels. Both thermal isolation and vapor replenishment techniques can limit the sample evaporative loss to approximately 1% of the reaction content.
机译:依靠扩散限制蒸发的原理,已经开发出了减少热生物反应过程中蒸发损失的微流体装置,例如不带微阀的PCR。理论和实验结果均表明,使用反应区域两侧窄的长扩散通道可将样品蒸发损失降低20倍以上。为了进一步抑制蒸发,通过两种附加技术降低了液体蒸发的驱动力:使用热隔离降低界面温度,并通过补充扩散通道中的水蒸气来降低蒸气浓度梯度。热隔离和蒸汽补给技术都可以将样品的蒸发损失限制在反应含量的大约1%。

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