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Shaped wall geometry with dielectrophoretic and laser forces for particle separation and characterization

机译:具有介电泳和激光力的异型壁几何形状,用于颗粒分离和表征

摘要

The combined value of integrating optical forces and electrokinetics allows for the pooled separation vectors of each to be applied, providing for separation based on combinations of features such as size, shape, refractive index, charge, charge distribution, charge mobility, permittivity, and deformability. The interplay of these separation vectors allow for the selective manipulation of analytes with a finer degree of variation. Embodiments include methods of method of separating particles in a microfluidic channel using a device comprising a microfluidic channel, a source of laser light focused by an optic into the microfluidic channel, and a source of electrical field operationally connected to the microfluidic channel via electrodes so that the laser light and the electrical field to act jointly on the particles in the microfluidic channel. Other devices and methods are disclosed.
机译:积分光学力和电动势的组合值允许应用每种的合并分离矢量,从而基于特征(例如大小,形状,折射率,电荷,电荷分布,电荷迁移率,介电常数和变形能力)的组合进行分离。这些分离载体的相互作用允许对分析物进行更精细的选择操作。实施例包括使用以下设备来分离微流体通道中的颗粒的方法的方法,该设备包括:微流体通道,被光学器件聚焦到微流体通道中的激光源,以及经由电极可操作地连接至微流体通道的电场源,使得激光和电场共同作用于微流体通道中的颗粒。公开了其他设备和方法。

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