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Under oil open-channel microfluidics empowered by exclusive liquid repellency

机译:在油开放式微流体下由独家液体排斥赋权

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Recently, the functionality of under oil open microfluidics was expanded from droplet-based operations to include lateral flow in under oil aqueous channels. However, the resolution of the under oil fluidic channels reported so far is still far from comparable with that of closed-channel microfluidics (millimeters versus micrometers). Here, enabled by exclusive liquid repellency and an under oil sweep technique, open microchannels can now be prepared under oil (rather than in air), which shrinks the channel dimensions up to three orders of magnitude compared to previously reported techniques. Spatial trapping of different cellular samples and advanced control of mass transport (i.e., enhanced upper limit of flow rate, steady flow with passive pumping, and reversible fluidic valves) were achieved with open-channel designs. We apply these functional advances to enable dynamic measurements of dispersion from a pathogenic fungal biofilm. The ensemble of added capabilities reshapes the potential application space for open microfluidics.
机译:最近,从基于液滴的操作扩展了油开孔微流体的功能,以包括油含水通道下的横向流动。然而,到目前为止报告的石油流体渠道的分辨率仍然远离闭声道微流体(毫米与微米)相当。这里,通过独占液体排斥性和在油扫描技术下,开放的微通道现在可以在油(而不是空气中)制备,与先前报告的技术相比,缩小到高达三个数量级的通道尺寸。通过开放式设计,实现了不同细胞样品的不同细胞样品和高级控制的高级控制(即,增强了流速的上限,与无源泵送,可逆流体阀)进行了空间。我们应用这些功能进步以使来自致病性真菌生物膜的分散的动态测量。添加功能的集合重塑开放微流体的潜在应用空间。

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