首页> 外文期刊>Measurement Science & Technology >Continuous and simultaneous measurement of the tank-treading motion of red blood cells and the surrounding flow using translational confocal micro-particle image velocimetry (micro-PIV) with sub-micron resolution
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Continuous and simultaneous measurement of the tank-treading motion of red blood cells and the surrounding flow using translational confocal micro-particle image velocimetry (micro-PIV) with sub-micron resolution

机译:使用亚微米分辨率的平移共聚焦微粒图像测速仪(micro-PIV)连续和同时测量红细胞的横行运动和周围流量

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摘要

In this study, a translational confocal micro-particle image velocimetry (PIV) system is introduced to measure the microscopic interaction between red blood cells (RBCs) and the surrounding flow. Since the macroscopic behavior of RBCs, such as the tank-treading motion, is closely related to the axial migration and other flow characteristics in arterioles, the measurement method must answer the conflicting demands of sub-micron resolution, continuous measurement and applicability for high-speed flow. In order to avoid loss of the measurement target, i.e. RBCs, from the narrow field of view during high-magnification measurement, the translation stage with the flow device moves in the direction opposite the direction of flow. The proposed system achieves the measurement of higher absolute velocities compared with a conventional confocal micro-PIV system without the drawbacks derived from stage vibration. In addition, we have applied a multicolor separation unit, which can measure different phases simultaneously using different fluorescent particles, in order to clarify the interaction between RBCs and the surrounding flow. Based on our measurements, the tank-treading motion of RBCs depends on the shear stress gradient of the surrounding flow. Although, the relationship between the tank-treading frequency and the shear rate of the surrounding flow is of the same order as in the previous uniform shear rate experiments, our results reveal the remarkable behavior of the non-uniform membrane velocities and lateral velocity component of flow around the RBCs.
机译:在这项研究中,引入了平移共聚焦微粒图像测速(PIV)系统来测量红细胞(RBC)与周围血流之间的微观相互作用。由于RBC的宏观行为(例如油箱踩踏运动)与小动脉的轴向迁移和其他流动特性密切相关,因此测量方法必须满足亚微米分辨率,连续测量和适用于高分辨力的矛盾需求。速度流。为了避免在高倍率测量期间从狭窄的视场损失测量目标,即RBC,带有流动装置的平移台沿与流动方向相反的方向移动。与传统的共聚焦微型PIV系统相比,所提出的系统实现了更高的绝对速度的测量,而没有平台振动引起的缺点。此外,我们已经应用了一个多色分离单元,该单元可以使用不同的荧光粒子同时测量不同的相位,以阐明RBC与周围流之间的相互作用。根据我们的测量,RBC的踩踏运动取决于周围流的切应力梯度。尽管油轮的踩踏频率与周围流的剪切速率之间的关系与先前的均匀剪切速率实验中的关系相同,但我们的结果揭示了膜的非均匀速度和横向速度分量的显着表现。在RBC周围流动。

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