首页> 外文期刊>JALA: Journal of the Association for Laboratory Automation >A Calibration-Free, Noncontact, Disposable Liquid Dispensing Cartridge Featuring an Online Process Control
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A Calibration-Free, Noncontact, Disposable Liquid Dispensing Cartridge Featuring an Online Process Control

机译:具有在线过程控制功能的免校准非接触式一次性液体分配筒

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摘要

We present a noncontact liquid dispenser that uses a disposable cartridge for the calibration-free dosage of diverse biochemical reagents from the nanoliter to the microliter range. The dispensing system combines the advantages of a positive displacement syringe pump (responsible for defining the aliquot's volume with high accuracy) with a highly dynamic noncontact dispenser (providing kinetic energy to detach the liquid from the tip). The disposable, noncontact dispensing cartridge system renders elaborate washing procedures of tips obsolete. A noncontact sensor monitors the dispensing process to enable an online process control. To further increase confidence and reliability for particularly critical biomedical applications, an optional closed-loop control prevents malfunctions. The dispensing performance was characterized experimentally in the range of 0.25 to 10.0 mu L using liquids of different rheological properties (viscosity 1.03-16.98 mPas, surface tension 30.49-70.83 mN/m) without adjusting or calibrating the actuation parameters. The precision ranged between a coefficient of variation of 0.5% and 5.3%, and the accuracy was below +/- 10%. The presented technology has the potential to contribute significantly to the improvement of biochemical liquid handling for laboratory automation in terms of usability, miniaturization, cost reduction, and safety.
机译:我们提出了一种非接触式液体分配器,该分配器使用一次性药筒,用于从纳升到微升范围内的各种生化试剂的无标定剂量。分配系统结合了容积式注射泵(负责精确定义等分试样的体积)和高动态非接触式分配器(提供动能以将液体从吸头中分离)的优点。一次性的非接触式分配盒系统使尖端的复杂洗涤程序过时了。非接触式传感器监控分配过程,以实现在线过程控制。为了进一步提高特别关键的生物医学应用的信心和可靠性,可选的闭环控制可防止故障。使用不同流变特性(粘度1.03-16.98 mPas,表面张力30.49-70.83 mN / m)的液体在不调节或校准致动参数的情况下,在0.25至10.0μL的范围内,对分配性能进行了实验表征。精度介于0.5%和5.3%的变异系数之间,并且精度低于+/- 10%。所提出的技术在可用性,小型化,降低成本和安全性方面,有可能为改善实验室自动化的生化液体处理做出重大贡献。

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