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一种采用微丝模塑法制造的新型聚二甲基硅氧烷微流体粘度计。

A novel polydimethylsiloxane microfluidic viscometer fabricated using microwire-molding.

作者信息

Zou Misha, Cai Shaoxi, Zhao Zhenli, Chen Longcong, Zhao Yi, Fan Xin, Chen Sijia

机构信息

Bioengineering College, Chongqing University, Chongqing 400044, China.

出版信息

Rev Sci Instrum. 2015 Oct;86(10):104302. doi: 10.1063/1.4933388.

Abstract

We present a new economical microfluidic viscometer to measure the viscosity of biological fluids, using sample volumes of less than 200 μl. It is fabricated using a microwire-molding technique, making it easier and cheaper to produce than existing viscometers. The viscometer is based on laminar flow inside a polydimethylsiloxane microchip. The velocity of the sample flow inside the capillary was monitored with a camera, and the movement of the liquid column was determined by a Matlab video-processing program. The device was calibrated using deionized water, which is a Newtonian fluid, at 20 °C. The viscometer provides accurate measurements of viscosity for values as small as 0.69 mPa s. The viscosity of water at different temperatures was measured, showing more than 98% agreement with the values provided by the National Institute of Standards and Technology. Various samples including a series of glycerol solutions, phosphate-buffered saline, alcohol, and cell media were also tested, and the measured viscosities were compared with those from a traditional glass capillary viscometer. The results show good agreement between the two methods, with an average relative error of less than 1%. Furthermore, the viscosities of several cell suspensions were measured, showing a relative standard deviation of less than 1.5%. The microchip viscometer is economical and is shown to be accurate, which is very important for the simulation and control of lab-on-a-chip experiments.

摘要

我们展示了一种新型经济的微流粘度计,用于测量生物流体的粘度,使用的样品体积小于200微升。它采用微丝成型技术制造,比现有的粘度计更容易生产且成本更低。该粘度计基于聚二甲基硅氧烷微芯片内的层流。用相机监测毛细管内样品流的速度,并通过Matlab视频处理程序确定液柱的移动。该装置使用20℃的去离子水(一种牛顿流体)进行校准。该粘度计能精确测量低至0.69毫帕秒的粘度值。测量了不同温度下水的粘度,与美国国家标准与技术研究院提供的值的一致性超过98%。还测试了包括一系列甘油溶液、磷酸盐缓冲盐水、酒精和细胞培养基在内的各种样品,并将测得的粘度与传统玻璃毛细管粘度计测得的粘度进行比较。结果表明两种方法之间具有良好的一致性,平均相对误差小于1%。此外,测量了几种细胞悬液的粘度,相对标准偏差小于1.5%。该微芯片粘度计经济且显示出准确性,这对于芯片实验室实验的模拟和控制非常重要。

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