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Microfluidic structures for LOC devices designed by laser lithography

机译:通过激光光刻设计的LOC器件的微流体结构

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Nowadays, lab on a chip (LOC) applications are very popular in the field of biomedicine. LOC device works with biological materials and enables to arrange conventional laboratory operations on a small chip. Philosophy of LOC applications stands on quick and precise diagnostics process and technology, which uses cheap materials with possibility of rapid prototyping. LOC, as a time saving application, works with small volume of samples and reagents and enables better control over the sample. We present fabrication method of functional LOC chip for different biomedical microfluidic applications based on direct laser writing (DLW) lithography. We present fabrication of few types of microfluidic and micro-optic structures with different capabilities created by DLW system. The combination of DLW lithography in photoresist layer deposited on glass substrate and polydimethylsiloxane (PDMS) replica molding process were used for patterning of designed microstructures. Prepared microfluidic and micro-optic structures were observed by confocal microscope and microfluidic flow observations were investigated by conventional optical microscope and CCD camera.
机译:如今,芯片实验室(LOC)应用在生物医学领域非常流行。 LOC设备可与生物材料一起使用,并可以将传统的实验室操作安排在小芯片上。 LOC应用程序的哲学主张快速,精确的诊断过程和技术,该过程使用廉价的材料并可能进行快速原型制作。 LOC作为一种节省时间的应用程序,可处理少量样品和试剂,并能更好地控制样品。我们提出了基于直接激光写入(DLW)光刻技术的不同生物医学微流控应用功能LOC芯片的制造方法。我们介绍了由DLW系统创建的几种类型的具有不同功能的微流体和微光学结构的制造。将沉积在玻璃基板上的光刻胶层中的DLW光刻技术与聚二甲基硅氧烷(PDMS)复制成型工艺相结合,用于对设计的微结构进行构图。共聚焦显微镜观察制备的微流体和微光学结构,常规光学显微镜和CCD相机观察微流体流动的观察结果。

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