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Real-time PCR Machine System Modeling and a Systematic Approach for the Robust Design of a Real-time PCR-on-a-Chip System

机译:实时PCR机系统建模和系统可靠的实时芯片上PCR系统的系统方法

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摘要

Chip-based DNA quantification systems are widespread, and used in many point-of-care applications. However, instruments for such applications may not be maintained or calibrated regularly. Since machine reliability is a key issue for normal operation, this study presents a system model of the real-time Polymerase Chain Reaction (PCR) machine to analyze the instrument design through numerical experiments. Based on model analysis, a systematic approach was developed to lower the variation of DNA quantification and achieve a robust design for a real-time PCR-on-a-chip system. Accelerated lift testing was adopted to evaluate the reliability of the chip prototype. According to the life test plan, this proposed real-time PCR-on-a-chip system was simulated to work continuously for over three years with similar reproducibility in DNA quantification. This not only shows the robustness of the lab-on-a-chip system, but also verifies the effectiveness of our systematic method for achieving a robust design.
机译:基于芯片的DNA定量系统已广泛使用,并在许多即时医疗应用中使用。但是,可能无法定期维护或校准用于此类应用的仪器。由于机器的可靠性是正常运行的关键问题,因此本研究提出了一种实时聚合酶链反应(PCR)机器的系统模型,通过数值实验来分析仪器的设计。基于模型分析,开发了一种系统的方法来降低DNA定量的变化,并为实时PCR-on-a-chip系统实现可靠的设计。采用加速提升测试来评估芯片原型的可靠性。根据寿命测试计划,此拟议的实时芯片上PCR系统经过仿真,可连续工作三年以上,并且在DNA定量分析中具有相似的可重复性。这不仅显示了片上实验室系统的鲁棒性,而且还验证了我们用于实现鲁棒性设计的系统方法的有效性。

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