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MEMS-based micro chamber PCR chip thermal analysis and structural improvement

机译:基于MEMS的微室PCR芯片的热分析和结构改进

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The heat conduction characteristic of integrated micro chamber Polymerase Chain Reaction (PCR) biochip based on Micro Electro Mechanical System (MEMS) technology is analyzed by COMSOL Multiphysics. Reaction solution vaporize in the middle air layer between he reaction solution and glass cover, and the temperature differences lead to a condensation of the gaseous reaction solution to the glass cover, and this reduce reaction efficiency and reaction output, also affect the following work of PCR and chip cleaning. The improved of the typical integration micro chamber PCR chip applies the same structure of serpentine heat resistance at the top and bottom of reaction chamber, and heat resistances are controlled by the same microprocessor. The simulation results show that improved structure restrain the condensation of the gaseous reaction solution, and provided a uniform temperature for the PCR reaction chamber.
机译:通过COMSOL Multiphysics分析了基于微机电系统(MEMS)技术的集成微腔室聚合酶链反应(PCR)生物芯片的热传导特性。反应溶液在反应溶液和玻璃盖之间的中间空气层中蒸发,温度差导致气态反应溶液凝结在玻璃盖上,这降低了反应效率和反应输出,也影响了PCR的后续工作和芯片清洁。典型集成微腔室PCR芯片的改进是在反应腔室的顶部和底部采用相同的蛇形耐热结构,并且耐热性由同一微处理器控制。仿真结果表明,改进的结构抑制了气态反应溶液的凝结,并为PCR反应室提供了均匀的温度。

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