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用于分析血浆和其他液体样本的纳升粘度计。

Nanoliter viscometer for analyzing blood plasma and other liquid samples.

作者信息

Srivastava Nimisha, Davenport Robertson D, Burns Mark A

机构信息

Department of Chemical Engineering, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Anal Chem. 2005 Jan 15;77(2):383-92. doi: 10.1021/ac0494681.

Abstract

We have developed a microfabricated nanoliter capillary viscometer that quickly, easily, and inexpensively measures the viscosity of liquids. The measurement of viscosity is based on capillary pressure-driven flow inside microfluidic channels (depth approximately 30 microm and width approximately 300 microm). Accurate and precise viscosity measurements can be made in less than 100 s while using only 600 nL of liquid sample. The silicon-glass hybrid device (18 mm by 15 mm) contains on-chip components that measure the driving capillary pressure difference and the relevant geometrical parameters; these components make the nanoliter viscometer completely self-calibrating, robust, and easy to use. Several different microfabricated viscometers were tested using solutions with viscosities ranging from 1 to 5 cP, a range relevant to biological fluids (urine, blood, blood plasma, etc.). Blood plasma samples collected from patients with the symptoms of hyperviscosity syndrome were tested on the nanoliter capillary viscometer to an accuracy of 3%. Such self-calibrating nanoliter viscometers may have widespread applications in chemical, biological, and medical laboratories as well as in personal health care.

摘要

我们开发了一种微纳制造的纳升毛细管粘度计,它能够快速、简便且低成本地测量液体粘度。粘度测量基于微流体通道(深度约30微米,宽度约300微米)内毛细管压力驱动的流动。仅使用600纳升液体样品,就能在不到100秒的时间内进行准确且精确的粘度测量。硅-玻璃混合装置(18毫米×15毫米)包含用于测量驱动毛细管压力差和相关几何参数的片上组件;这些组件使纳升粘度计完全实现自校准、坚固耐用且易于使用。使用粘度范围为1至5厘泊的溶液对几种不同的微纳制造粘度计进行了测试,该粘度范围与生物流体(尿液、血液、血浆等)相关。在纳升毛细管粘度计上对从患有高粘滞血症症状的患者采集的血浆样本进行测试,准确度达3%。这种自校准纳升粘度计可能在化学、生物和医学实验室以及个人医疗保健领域有广泛应用。

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