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Micro-Viscometer for Measuring Shear-Varying Blood Viscosity over a Wide-Ranging Shear Rate

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Abstract
In this study, a micro-viscometer is developed for measuring shear-varying blood viscosity over a wide-ranging shear rate. The micro-viscometer consists of 10 microfluidic channel arrays, each of which has a different micro-channel width. The proposed design enables the retrieval of 10 different shear rates from a single flow rate, thereby enabling the measurement of shear-varying blood viscosity with a fixed flow rate condition. For this purpose, an optimal design that guarantees accurate viscosity measurement is selected from a parametric study. The functionality of the micro-viscometer is verified by both numerical and experimental studies. The proposed micro-viscometer shows 6.8% (numerical) and 5.3% (experimental) in relative error when compared to the result from a standard rotational viscometer. Moreover, a reliability test is performed by repeated measurement (N = 7), and the result shows 2.69 +/- 2.19% for the mean relative error. Accurate viscosity measurements are performed on blood samples with variations in the hematocrit (35%, 45%, and 55%), which significantly influences blood viscosity. Since the blood viscosity correlated with various physical parameters of the blood, the micro-viscometer is anticipated to be a significant advancement for realization of blood on a chip.
Author(s)
Kim, Byung JunLee, Seung YeobJee, Sol KeunAtajanov, ArslanYang, Sung
Issued Date
2017-06
Type
Article
DOI
10.3390/s17061442
URI
https://scholar.gist.ac.kr/handle/local/13733
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Citation
Sensors, v.17, no.6, pp.1442
ISSN
1424-8220
Appears in Collections:
Department of Mechanical and Robotics Engineering > 1. Journal Articles
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