Multiple independent autonomous hydraulic oscillators driven by a common gravity head

由一个共同的重力头驱动的多个独立自主液压振荡器

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作者:Sung-Jin Kim, Ryuji Yokokawa, Sasha Cai Lesher-Perez, Shuichi Takayama

Abstract

Self-switching microfluidic circuits that are able to perform biochemical experiments in a parallel and autonomous manner, similar to instruction-embedded electronics, are rarely implemented. Here, we present design principles and demonstrations for gravity-driven, integrated, microfluidic pulsatile flow circuits. With a common gravity head as the only driving force, these fluidic oscillator arrays realize a wide range of periods (0.4 s-2 h) and flow rates (0.10-63 μl min(-1)) with completely independent timing between the multiple oscillator sub-circuits connected in parallel. As a model application, we perform systematic, parallel analysis of endothelial cell elongation response to different fluidic shearing patterns generated by the autonomous microfluidic pulsed flow generation system.

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