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Multiple and Periodic Measurement of RBC Aggregation and ESR in Parallel Microfluidic Channels under On-Off Blood Flow Control

机译:开关血流控制下并行微流控通道中RBC聚集和ESR的多周期测量

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摘要

Red blood cell (RBC) aggregation causes to alter hemodynamic behaviors at low flow-rate regions of post-capillary venules. Additionally, it is significantly elevated in inflammatory or pathophysiological conditions. In this study, multiple and periodic measurements of RBC aggregation and erythrocyte sedimentation rate (ESR) are suggested by sucking blood from a pipette tip into parallel microfluidic channels, and quantifying image intensity, especially through single experiment. Here, a microfluidic device was prepared from a master mold using the xurography technique rather than micro-electro-mechanical-system fabrication techniques. In order to consider variations of RBC aggregation in microfluidic channels due to continuous ESR in the conical pipette tip, two indices (aggregation index (AI) and erythrocyte-sedimentation-rate aggregation index (EAI)) are evaluated by using temporal variations of microscopic, image-based intensity. The proposed method is employed to evaluate the effect of hematocrit and dextran solution on RBC aggregation under continuous ESR in the conical pipette tip. As a result, EAI displays a significantly linear relationship with modified conventional ESR measurement obtained by quantifying time constants. In addition, EAI varies linearly within a specific concentration of dextran solution. In conclusion, the proposed method is able to measure RBC aggregation under continuous ESR in the conical pipette tip. Furthermore, the method provides multiple data of RBC aggregation and ESR through a single experiment. A future study will involve employing the proposed method to evaluate biophysical properties of blood samples collected from cardiovascular diseases.
机译:红细胞(RBC)聚集会改变毛细血管后小静脉低流速区域的血液动力学行为。另外,它在炎症或病理生理状况下显着升高。在这项研究中,建议通过从移液器吸头将血液吸入平行的微流体通道并量化图像强度(尤其是通过单个实验)来对RBC聚集和红细胞沉降速率(ESR)进行多次和定期测量。在此,使用X线照相技术而不是微机电系统制造技术从母模制备微流体装置。为了考虑由于锥形移液器吸头中连续的ESR引起的微流体通道中RBC聚集的变化,使用微观的时间变化来评估两个指标(聚集指数(AI)和红细胞沉降速率聚集指数(EAI)),基于图像的强度。所提出的方法用于评估在锥形移液管头中连续ESR下血细胞比容和右旋糖酐溶液对RBC聚集的影响。结果,EAI与通过量化时间常数获得的改进的常规ESR测量显示出显着的线性关系。此外,EAI在葡聚糖溶液的特定浓度内线性变化。综上所述,该方法能够在锥形移液器吸头连续ESR下测量RBC聚集。此外,该方法通过单个实验提供了RBC聚合和ESR的多个数据。未来的研究将涉及采用提议的方法评估从心血管疾病中采集的血液样本的生物物理特性。

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