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Laser guidance in a microfluidic biochip

机译:Microfluidic Biochip中的激光引导

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摘要

In this study, we developed a microfluidic biochip to perform laser guidance on two cell types, chick embryonic forebrain neurons and chick embryonic spinal cord neurons. The neurons we obtained from these two cell types have no difference in morphology as observed under a high-magnification microscope. However, when flowing in the microfluidic channel and simultaneously being laser-guided, the two cell types gained quite different guidance velocities under the same experimental conditions. The experimental results demonstrate that different cell types with the same morphology (e.g., size, shape, etc.) can be effectively distinguished from each other by measuring the difference of guidance velocities (the maximum flow velocities minus the initial flow velocities). This technique is expected to provide a new approach to high-throughput, label-free cell sorting with sensitivity.
机译:在这项研究中,我们开发了一种微流体Biochip,以对两种细胞类型进行激光指导,小鸡胚胎前脑神经元和鹰嘴胚脊髓神经元。我们从这两个细胞类型获得的神经元在高倍率显微镜下观察到的形态没有差异。然而,当在微流体通道中流动并同时被激光引导时,在相同的实验条件下,两个细胞类型获得了相同的引导速度。实验结果表明,通过测量引导速度的差异(最大流速减去初始流速),可以有效地区分具有相同形态(例如,尺寸,形状等)的不同细胞类型(例如,最大流速减去初始流速)。该技术有望为具有灵敏度的高吞吐量,无标记的细胞分类提供新的方法。

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