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Disposable Optical Stretcher Fabricated by Microinjection Moulding

机译:通过显微注射成型制造的一次性光学担架

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摘要

Microinjection moulding combined with the use of removable inserts is one of the most promising manufacturing processes for microfluidic devices, such as lab-on-chip, that have the potential to revolutionize the healthcare and diagnosis systems. In this work, we have designed, fabricated and tested a compact and disposable plastic optical stretcher. To produce the mould inserts, two micro manufacturing technologies have been used. Micro electro discharge machining (µEDM) was used to reproduce the inverse of the capillary tube connection characterized by elevated aspect ratio. The high accuracy of femtosecond laser micromachining (FLM) was exploited to manufacture the insert with perfectly aligned microfluidic channels and fibre slots, facilitating the final composition of the optical manipulation device. The optical stretcher operation was tested using microbeads and red blood cells solutions. The prototype presented in this work demonstrates the feasibility of this approach, which should guarantee real mass production of ready-to-use lab-on-chip devices.
机译:显微注射成型与使用可移除插入物的组合是用于微流体设备,例如实验室片上,即有可能彻底改变医疗和诊断系统的潜在的最有前途的制造工艺中的一个。在这项工作中,我们已经设计,制造和测试的紧凑和一次性塑料光学担架。为了制备模具插件,使用了两个微制造技术。微放电加工(μEDM)用于重现毛细管连接,其特征在于纵横比升高的倒数。飞秒激光微加工的(FLM)高精度被利用来制造具有完全对齐的微流体通道和纤维槽插入件,便于光学操纵装置的最终组合物。光学担架操作,使用微珠和红血细胞的解决方案进行测试。在这项工作中提出的原型演示了这种做法,这应该保证真正的量产准备使用的实验室芯片设备的可行性。

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