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Microwave Heating System for the LAMP Technique based DNA Amplification Process

机译:基于LAMP技术的DNA扩增过程的微波加热系统

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摘要

An alternative design of the heating system associated with Loop-mediated Isothermal Amplification (LAMP) technique used in Deoxyribonucleic acid (DNA) amplification is proposed. The system features the heat source equipped with the Archimedean spiral heating coil whose dimension is designed to support the maximum blood droplet size of 3 μL. The coil is supplied by the 500 mA, 2.4 GHz AC current. This specific frequency is selected since its generator is cheap, compact, and widely available although the frequency is not in the coil's resonance range. The simulation model consists not only of the LAMP process's heat source but also surrounding lab-on-a-chip (LOC) components. The simulation result shows that the model temperature increases monotonically with the process time. It takes around 185 seconds for the blood droplet to reach the target of 60°C. The heating time decreases only slightly at 5-40 GHz operating frequency. Therefore, the proposed 2.4 GHz heating system is considered viable for the LAMP process.
机译:提出了与在脱氧核糖核酸(DNA)扩增中使用的环介导的等温扩增(LAMP)技术相关的加热系统的替代设计。该系统的特点是热源配备了Archimedean螺旋加热线圈,其尺寸设计为可支持3μL的最大血滴尺寸。线圈由500 mA,2.4 GHz交流电流供电。选择该特定频率是因为其发电机便宜,紧凑且可广泛使用,尽管该频率不在线圈的谐振范围内。该仿真模型不仅包含LAMP工艺的热源,还包含周围的芯片实验室(LOC)组件。仿真结果表明,模型温度随处理时间的增加而单调升高。血滴到达60°C的目标大约需要185秒。在5-40 GHz的工作频率下,加热时间仅略有减少。因此,建议的2.4 GHz加热系统被认为可用于LAMP工艺。

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