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APPARATUS AND METHOD OF MOVING MICRO-DROPLETS USING LASER-INDUCED THERMAL GRADIENTS

机译:利用激光诱导的热梯度移动微滴的装置和方法

摘要

Described are an apparatus (4) and method of moving micro-droplets. A surface (8) has a liquid phase (12) thereon. In the liquid phase is a droplet (14). Focused at an edge of the droplet is a beam of light (28). The light beam produces a thermal gradient sufficient to induce the droplet (14) to move according to the Marangoni effect. The movement-inducing thermal gradient may appear within the droplet or within the liquid phase. The composition of the droplet, the liquid phase, and wavelength of the light beam can cooperate to cause heating within the droplet, liquid phase, or both. For example, an infrared laser can cause vibration of an O-H stretch in an aqueous droplet (or in the liquid phase). As another example, adding dye to a droplet or to the liquid phase enables absorption of light from an Argon ion laser. The apparatus and method find particular use in biological and chemical high-throughput assays.
机译:描述了移动微滴的设备(4)和方法。表面(8)在其上具有液相(12)。在液相中是液滴(14)。一束光束聚焦在液滴的边缘(28)。光束产生足以引起液滴(14)根据Marangoni效应移动的热梯度。引起运动的热梯度可能出现在液滴内或液相内。液滴的组成,液相和光束的波长可以协同作用以在液滴,液相或两者中引起加热。例如,红外激光可引起水滴(或液相)中O-H拉伸的振动。作为另一示例,将染料添加到液滴或液相中使得能够吸收来自氩离子激光器的光。该设备和方法特别适用于生物和化学高通量分析。

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