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High-speed sensing of microliter-order whole-blood viscosity using laser-induced capillary wave

机译:利用激光诱导的毛细管波高速感测微升级全血粘度

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摘要

The present paper introduces an innovative contact-free optical viscosity measurement technique, laser-induced capillary wave (LiCW) using pulsed YAG laser as a heating source, to measure whole-blood viscosity with only a microliter-order sample volume and measurement time on the millisecond order. In this method, interfering pulsed laser beams heat a whole-blood sample and generate a capillary wave, the amplitude of which is less than 10 nm with wavelength of 80-100 μm in the present experiment, caused by a spatially sinusoidal temperature distribution. The damped oscillation of the capillary wave, which is detected by a diffracted probing laser beam at the heated area, provides information regarding the viscosity and surface tension of the whole blood. To demonstrate the validity of the present laser-induced capillary wave viscometer, the viscosity of human whole blood taken from two healthy donors having different hematocrit values was measured using 90 μl sample volumes at 37℃. To consider the feasibility of the present technique for blood rheological studies, we discuss the characteristics of LiCW regarding the non-Newtonian behavior of blood, the velocity boundary layer, the existence of a free surface, and the temperature increase of the blood, and also demonstrate the capability of the method to sense the temporal evolution of blood viscosity with sampling frequency of 0.25 Hz.
机译:本文介绍了一种创新的非接触式光学粘度测量技术,即使用脉冲YAG激光作为加热源的激光诱导毛细管波(LiCW),可在微升级样品体积和测量时间上测量全血粘度。毫秒级。在这种方法中,由于空间正弦温度分布,在本实验中,干涉脉冲激光束加热了整个血液样本并产生了毛细管波,该毛细管波的振幅小于10 nm,波长为80-100μm。毛细管波的阻尼振荡由加热区域的衍射探测激光束检测到,可提供有关全血粘度和表面张力的信息。为了证明本激光诱导毛细管波粘度计的有效性,在90℃下使用90μl样品量测量了取自两个具有不同血细胞比容值的健康供体的人全血粘度。为了考虑本技术在血液流变学研究中的可行性,我们讨论了LiCW在血液的非牛顿行为,速度边界层,自由表面的存在以及血液温度升高方面的特性,以及证明了该方法在0.25 Hz采样频率下检测血液粘度随时间变化的能力。

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