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Pneumatic valves in folded 2D and 3D fluidic devices made from plastic films and tapes

机译:由塑料薄膜和胶带制成的折叠式2D和3D流体装置中的气动阀

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摘要

We present a rapid prototyping technique that expands elastomeric valving capabilities to devices made from thin materials such as plastic films and tapes. The time required from conception to full fabrication of functional devices is within a few hours. A key characteristic of this technology is that devices are thin (typically less than 0.5 mm in thickness), which allows for the fabrication of devices with many layers. This feature also permits folding of devices into 3D structures having fully functional valves. We illustrate this concept with the fabrication of a 25 mm-per-side cube whose walls contain microfluidic channels and valves. Control of liquid delivery through the faces of the cube is demonstrated with a chemotaxis experiment of C. elegans migrating within the enclosed volume of the cube as stimuli are delivered through the walls of the cube to the interior faces.
机译:我们提出了一种快速成型技术,可将弹性阀功能扩展到由薄材料(例如塑料薄膜和胶带)制成的设备。从构思到功能设备的全面制造所需的时间在几个小时之内。该技术的关键特征是器件很薄(通常厚度小于0.5毫米),这允许制造具有多层的器件。此功能还允许将设备折叠成具有全功能阀门的3D结构。我们通过制造每边25毫米的立方体来说明这一概念,该立方体的壁包含微流体通道和阀门。通过刺激物通过立方体的壁被传递到内表面时,秀丽隐杆线虫在立方体的封闭体积内迁移的趋化实验证明了对通过立方体的表面的液体输送的控制。

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