首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2008 >A THERMAL SYSTEM FOR A HIGH THROUGHPUT CONTINUOUS FLOW POLYMERASE CHAIN REACTION DEVICE (CFPCR)
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A THERMAL SYSTEM FOR A HIGH THROUGHPUT CONTINUOUS FLOW POLYMERASE CHAIN REACTION DEVICE (CFPCR)

机译:高通量连续流动聚合酶链反应装置(CFPCR)的热系统

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A thermal system used to evaluate a high throughput 96 continuous flow polymerase chain reactor (CFPCR) array was designed, fabricated, and tested. Each polymerase chain reactor (PCR) in the array required three different temperature zones to realize denaturaiton at 90°C-94°C, renaturation at 50°C -70°C, and extension at 72°C; a total of 288 temperature zones were required for the 96 CFPCR array. In an initial configuration, 18 copper strips were used to define the 288 temperature zones. Each copper strip was controlled by a PID feedback control loop. Numerical simulations were used to understand the thermal crosstalk phenomena between the micromilled copper strips, which were tightly packed since the high throughput micro-titer plate format restricted each CFPCR to a square 8 mm on a side. The lowest achievable temperature in each renaturation zone in this complicated thermal environment was also identified. Thermal crosstalk limited the minimum renaturation temperature to 61.1°C. An infrared camera was used to investigate the temperature uniformity over a 0.25 mm thick polycarbonate sheet mounted on the thermal system. The temperature distribution was not uniform due to poor contact between the copper strips and device, warm air accumulated between the packed copper strips, and greater heat transfer around the boundaries of the device. More work is required to overcome these limitations and achieve a more uniform temperature distribution for a multi well CFPCR.
机译:设计,制造和测试了用于评​​估高通量96连续流聚合酶链反应器(CFPCR)阵列的热系统。阵列中的每个聚合酶链反应器(PCR)都需要三个不同的温度区,以实现90°C-94°C的变性,50°C -70°C的变性和72°C的延伸。 96 CFPCR阵列总共需要288个温度区。在初始配置中,使用18条铜带来定义288个温度区域。每个铜带均由PID反馈控制回路控制。数值模拟被用来理解微细研磨的铜条之间的热串扰现象,由于高通量的微量滴定板形式将每个CFPCR的一侧限制为8 mm的正方形,因此紧密包装。还确定了在这种复杂的热环境下,每个复性区可达到的最低温度。热串扰将最低复性温度限制为61.1°C。使用红外热像仪研究安装在热系统上的0.25毫米厚的聚碳酸酯板上的温度均匀性。由于铜条与设备之间的接触不良,填充的铜条之间积聚的热空气以及设备边界周围的更大的热量传递,温度分布不均匀。对于多孔CFPCR,需要更多的工作来克服这些限制并实现更均匀的温度分布。

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