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Separation of micro-particles utilizing spatial difference of optically induced dielectrophoretic forces

机译:利用光诱导介电泳力的空间差异分离微粒

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摘要

This paper presents new methods to accurately separate micro-particles with different sizes using optically induced dielectrophoretic (ODEP) forces. It is found that the strength of the ODEP force induced on the hydroge-nated amorphous silicon surface is determined by the color, line-width and intensity of the optical beams, which provide an innovative design for particle separation. Two linear-segment virtual electrodes which produced the ODEP forces were firstly defined by illuminating lights onto a photoconductive chip. One moving line and one stationary illuminated line were used to generate a stronger and a weaker ODEP force, respectively. The micro-particles were then continuously pushed forward by the stronger ODEP force. As these lines approached each other, larger micro-particles entrained by the higher ODEP forces were squeezed through the stationary electrode and subsequently separated from the smaller particles. With this approach, continuous particle separation can be automatically achieved within a few seconds. This developed method may be promising for a variety of applications such as cell-based assays and sample pretreatment using micro-particles.
机译:本文提出了利用光诱导介电电泳(ODEP)力精确分离具有不同尺寸的微粒的新方法。可以发现,在水化后的非晶硅表面上产生的ODEP力的强度取决于光束的颜色,线宽和强度,这为粒子分离提供了创新的设计。首先通过将光照射到光电导芯片上来定义产生ODEP力的两个线性段虚拟电极。一条移动线和一条固定的照明线分别用于产生更强和更弱的ODEP力。然后,通过更强的ODEP力将微粒不断向前推进。随着这些线彼此接近,被较高的ODEP力夹带的较大的微粒被挤压通过固定电极,随后与较小的微粒分离。使用这种方法,可以在几秒钟内自动实现连续的颗粒分离。这种发达的方法可能有望用于多种应用,例如基于细胞的测定和使用微粒的样品预处理。

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