首页> 外文期刊>Sensors and Actuators >Separations of spherical and disc-shaped polystyrene particles and blood components (red blood cells and platelets) using pinched flow fractionation device with a tilted sidewall and vertical focusing channels (t-PFF-v)
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Separations of spherical and disc-shaped polystyrene particles and blood components (red blood cells and platelets) using pinched flow fractionation device with a tilted sidewall and vertical focusing channels (t-PFF-v)

机译:使用带有倾斜侧壁和垂直聚焦通道(t-PFF-v)的挤压流动分级分离装置分离球形和盘状聚苯乙烯颗粒和血液成分(红细胞和血小板)

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摘要

Shape-based separation capabilities of a novel pinched flow fractionation device with a tilted sidewall and vertical focusing channels (t-PFF-v) were demonstrated for (1) spherical and disc-shaped polystyrene (PS) particles; (2) platelets (PLT) and red blood cells (RBC); and (3) singlet, doublet, and triplet clusters of disc-shaped PS particles. The tilted sidewalls and vertical focusing channels of the t-PFF-v device allowed us to perform enhanced separation of non-spherical particles. Using this t-PFF-v device with a W_p (pinched segment width) of 20 μm and 15 μm, not only spherical (diameter of 2 μm) and disc-shaped (thickness of ~2 μm, diameter of ~5.0 μm) PS particles but also PLTs and RBCs from diluted blood were well separated with good separation resolutions (R_(disc,sphere) = 1.40 and R_(PLT.RBC) = 1.28). Additionally, time-lapse images of flowing particles indicated that both disc-shaped PS particles and RBCs are probably having type 1 orientation in the pinched segment (i.e., leaning against the tilted sidewalls at the pinched segment). Moreover, we observed streamlines of singlet, doublet, and triplet clustered disc-shaped PS particles, which suggested that these clustered particles could be well separated according to their aspect ratio. The doublet or triplet clustered PS particles are probably lay on the floor and rotated at the pinched segment (type II orientation). We believe that this shape-based separation capability achieved by the t-PFF-v device can be utilized for many application areas, such as medical, biological, material and colloidal sciences.
机译:一种具有倾斜侧壁和垂直聚焦通道(t-PFF-v)的新型收缩流分馏装置的基于形状的分离能力已被证明用于(1)球形和盘状聚苯乙烯(PS)颗粒; (2)血小板(PLT)和红细胞(RBC); (3)圆盘状PS颗粒的单重态,双重态和三重态簇。 t-PFF-v设备的倾斜侧壁和垂直聚焦通道使我们能够增强非球形颗粒的分离。使用W_p(收缩段宽度)为20μm和15μm的t-PFF-v器件,不仅球形(直径为2μm)而且为圆盘形(厚度为〜2μm,直径为〜5.0μm)PS分离的颗粒以及稀释血液中的PLT和RBC均以良好的分离分辨率(R_(disc,sphere)= 1.40和R_(PLT.RBC)= 1.28)很好地分离。另外,流动粒子的延时图像表明,盘形PS粒子和RBC可能在收缩段中都具有类型1定向(即,在收缩段上倾斜于倾斜的侧壁)。此外,我们观察到了单重态,双重态和三重态簇状圆盘形PS颗粒的流线,这表明这些簇状颗粒可以根据其长宽比很好地分离。两重态或三重态簇聚的PS粒子可能躺在地板上,并在收缩段(II型取向)处旋转。我们相信,通过t-PFF-v设备实现的基于形状的分离功能可用于许多应用领域,例如医学,生物学,材料和胶体科学。

著录项

  • 来源
    《Sensors and Actuators》 |2017年第10期|131-141|共11页
  • 作者单位

    Department of Chemistry, College of Natural Sciences, Hanyang University. Seoul 04763, Republic of Korea,Smart Sensor Research Center, Korea Electronics Technology Institute, Seongnam, Cyeonggi 13509. Republic of Korea;

    Department of Chemistry, College of Natural Sciences, Hanyang University. Seoul 04763, Republic of Korea,Smart Sensor Research Center, Korea Electronics Technology Institute, Seongnam, Cyeonggi 13509. Republic of Korea;

    Department of Laboratory Medicine, College of Medicine, Yonsei University, Seoul 03722, Republic of Korea;

    Smart Sensor Research Center, Korea Electronics Technology Institute, Seongnam, Cyeonggi 13509. Republic of Korea;

    Department of Chemistry, College of Natural Sciences, Hanyang University. Seoul 04763, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microfluidics; Non-spherical particle separation; Blood separation; Pinched flow fabrication; Fabrication of disc shaped particles;

    机译:微流体;非球形颗粒分离;血液分离;捏流制造;盘状颗粒的制造;

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