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Linear conversion of pressure into concentration, rapid switching of concentration, and generation of linear ramps of concentration in a microfluidic device

机译:将压力线性转换为浓度,快速转换浓度,并在微流体装置中生成浓度的线性变化

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摘要

Mixing of liquids to produce solutions with different concentrations is one of the basic functionalities of microfluidic devices. Generation of specific temporal patterns of concentration in microfluidic devices is an important technique to study responses of cells and model organisms to variations in the chemical composition of their environment. Here, we present a simple microfluidic network that linearly converts pressure at an inlet into concentration of a soluble reagent in an observation region and also enables independent concurrent linear control of concentrations of two reagents. The microfluidic device has an integrated mixer channel with chaotic three-dimensional flow that facilitates rapid switching of concentrations in a continuous range. A simple pneumatic setup generating linear ramps of pressure is used to produce smooth linear ramps and triangular waves of concentration with different slopes. The use of chaotic vs. laminar mixers is discussed in the context of microfluidic devices providing rapid switching and generating temporal waves of concentration.
机译:混合液体以产生具有不同浓度的溶液是微流体装置的基本功能之一。在微流体装置中产生浓度的特定时间模式是研究细胞和模型生物对其环境化学组成变化的反应的重要技术。在这里,我们介绍了一个简单的微流控网络,该网络将入口处的压力线性转换为观察区域中可溶性试剂的浓度,并且还可以独立并行地线性控制两种试剂的浓度。微流体装置具有集成的混合器通道,该混合器通道具有混沌的三维流动,有助于在连续范围内快速切换浓度。一个简单的气动装置产生压力的线性斜率,以产生平滑的线性斜率和不同斜率的浓度三角波。在提供快速切换并产生时间集中波的微流体装置的背景下讨论了混沌混合器与层流混合器的使用。

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