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Patternable particle microarray utilizing controllable particle delivery

机译:利用可控粒子传输的可图案化粒子微阵列

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In this study, we demonstrate an on-demand delivering and sequential arraying of single microparticles utilizing multiple pneumatic pressure-driven elastomer valves and a deterministic particle arraying mechanism. Two types of separate microfluidic devices are combined: (i) a particle transfer device and (ii) a particle arraying device, to construct a desired particle pattern. The elastomer valve integrated in the transfer device acts as a removable particle trap that enables the trapping and on-demand releasing of a particle depending on the application of the pneumatic pressure. The arraying device is composed of highly packed particle trapping sites to deterministically array incoming particles that are released and transferred from a transfer device. Repeating the “trapping-transfer-and-array” sequence can construct an array of different types of particles in a certain pattern. One-dimensional linear and two-dimensional planar microparticle-based patterns were demonstrated using bare and red-fluorescent microparticles.
机译:在这项研究中,我们演示了利用多个气动压力驱动的弹性体阀和确定性颗粒排列机制按需交付和顺序排列单个微粒的方法。将两种类型的单独的微流体设备组合在一起:(i)粒子传输设备和(ii)粒子排列设备,以构建所需的粒子图案。集成在传输设备中的弹性阀充当可移动的颗粒捕集器,可根据气压的施加来捕集和按需释放颗粒。排列装置由高度堆积的颗粒捕获位点组成,以确定性地排列从转移装置释放和转移的进入粒子。重复“捕集转移并排列”序列可以按一定模式构建不同类型颗粒的阵列。一维线性和二维平面微粒为基础的模式已证明使用裸露和红色荧光微粒。

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