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A scalable engineering approach to improve performance of a miniaturized optical detection system for in vitro point-of-care testing

机译:一种可扩展的工程方法,提高小型光学检测系统对体外护理点测试的性能

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The demand for rapid screening technologies, to be used outside of a traditional healthcare setting, has been vastly expanding. This is requiring a new engineering platform for faster and cost effective techniques to be easily adopted through forward-thinking manufacturing procedures, i.e., advanced miniaturisation and heterogeneous integration of high performance microfluidics based point-of-care testing (POCT) systems. Although there has been a considerable amount of research into POCT systems, there exist tremendous challenges and bottlenecks in the design and manufacturing in order to reach a clinical acceptability of sensitivity and selectivity, as well as smart microsystems for healthcare. The project aims to research how to enable scalable production of such complex systems through 1) advanced miniaturisation of a physical layout and opto-electronic component allocation through an optimal design; and 2) heterogeneous integration of multiplexed fluorescence detection (MFD) for in vitro POCT. Verification is being arranged through experimental testing with a series of dilutions of commonly used fluorescence dye, i.e. Cy5. Iterative procedures will be engaged until satisfaction of the detection limit, of Cy5 dye, 1.209×10~(-10) M. The research creates a new avenue of rapid screening POCT manufacturing solutions with a particular view on high performance and multifunctional detection systems not only in POCT, but also life sciences and environmental applications.
机译:,用于快速筛查技术的需求,是一个传统的医疗环境中的使用外,已大大扩大。这需要一个新的工程平台,更快,成本效益的技术,通过很容易地采取前瞻性的制造方法,即先进的小型化和基于床边血糖检测(POCT)系统高性能的微流控异构集成。虽然目前已经有相当数量的研究POCT系统中,存在巨大的挑战和瓶颈,在设计和制造,以达到灵敏度和选择性的临床可接受性,以及智能微系统医疗保健。该项目旨在研究如何通过1)通过最佳设计的物理布局和光电元件分配的先进微型化支持可扩展生产这种复杂的系统;和2)用于在体外POCT异构集成复用荧光检测(MFD)的。验证正被布置为通过实验测试了一系列常用的荧光染料的稀释液,即Cy5的。迭代过程将被接合,直到检测极限Cy5染料的,满意度,1.209×10〜(-10)M.研究创建快速筛选POCT制造的解决方案的用于高性能和多功能的检测系统不是一个特定视图的新途径只有在POCT,而且生命科学和环境应用。

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