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Design, fabrication and testing of thermal components and their integration into a microfluidic device

机译:热组件的设计,制造和测试及其与微流体设备的集成

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We discuss the design, integration and testing of thermal components in a microfluidic device designed for on-chip genetic sample preparation. A typical microdevice must perform several operations to be capable of analyzing a sample of body fluid (blood, urine, saliva), extracting DNA from concentrated cells, hybridization, purifying and amplifying DNA, and finally detecting DNA fragments of interest. Reduction of the sample volume down to a few /spl mu/Ls and improvement of the ramp times between temperature steps makes micro-PCR devices desirable. Thermal components such as heaters and resistive thermal devices (RTDs) are fabricated as an integral part of a complete genetic sample preparation micro-system. The ability to precisely control the temperature is a critical component of most microfluidic devices intended for on-chip genetic sample preparation Devices were fabricated and demonstrated a temperature variation of /spl sim/1/spl deg/C over the entire sample volume. The design of a device, including chamber dimensions, and placement of the heating and cooling elements is presented. The results of temperature cycling experiments are shown. We have measured a heating rate of /spl sim/2.4/spl deg/C/s and a cooling rate of /spl sim/2.0/spl deg/C/s for devices tested under active heating/cooling control. A brief overview of relevant microfabrication methods is also presented.
机译:我们讨论了设计用于芯片遗传样品制备的微流控设备中热组件的设计,集成和测试。典型的微型设备必须执行多项操作才能分析体液(血液,尿液,唾液)样本,从浓缩细胞中提取DNA,杂交,纯化和扩增DNA,最后检测出目标DNA片段。将样品体积减少到几个/ splμu/ Ls,并改善温度步骤之间的升温时间,使micro-PCR装置成为人们所希望的。诸如加热器和电阻热设备(RTD)之类的热组件被制造为完整的遗传样品制备微系统的组成部分。精确控制温度的能力是打算用于芯片上遗传样品制备的大多数微流体设备的关键组成部分。制造了设备,并证明了在整个样品体积中/ spl sim / 1 / spl deg / C的温度变化。介绍了设备的设计,包括腔室尺寸以及加热和冷却元件的位置。显示了温度循环实验的结果。对于在主动加热/冷却控制下测试的设备,我们测得的加热速率为/ spl sim / 2.4 / spl deg / C / s,冷却速率为/ spl sim / 2.0 / spl deg / C / s。还简要介绍了相关的微加工方法。

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