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首页> 外文期刊>Nature Communications >Rotational separation of non-spherical bioparticles using I-shaped pillar arrays in a microfluidic device.
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Rotational separation of non-spherical bioparticles using I-shaped pillar arrays in a microfluidic device.

机译:在微流控设备中使用I形柱阵列旋转分离非球形生物颗粒。

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摘要

Most bioparticles, such as red blood cells and bacteria, are non-spherical in shape. However, conventional microfluidic separation devices are designed for spherical particles. This poses a challenge in designing a separation device for non-spherical bioparticles, as the smallest dimension of the bioparticle has to be considered, which increases fabrication challenges and decreases the throughput. If current methods do not take into account the shape of non-spherical bioparticles, the separation will be inefficient. Here, to address this challenge, we present a novel technique for the separation of red blood cells as a non-spherical bioparticle, using a new I-shaped pillar arrays design. It takes the shape into account and induces rotational movements, allowing us to leverage on the largest dimension, which increases its separation size. This technique has been used for 100% separation of red blood cells from blood samples in a focused stream, outperforming the conventional pillar array designs.
机译:大多数生物颗粒,例如红细胞和细菌,都是非球形的。然而,常规的微流体分离装置被设计用于球形颗粒。这在设计用于非球形生物颗粒的分离装置时提出了挑战,因为必须考虑生物颗粒的最小尺寸,这增加了制造挑战并降低了产量。如果当前的方法不考虑非球形生物颗粒的形状,则分离将是无效的。在这里,为了解决这一挑战,我们提出了一种使用新的I形柱阵列设计将红细胞分离为非球形生物颗粒的新技术。它考虑了形状并引起旋转运动,从而使我们能够利用最大尺寸,从而增加了其分离尺寸。该技术已用于在聚焦流中从血液样本中100%分离红细胞,优于传统的柱阵列设计。

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