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Development of a passive liquid valve (PLV) utilizing a pressure equilibrium phenomenon on the centrifugal microfluidic platform

机译:利用离心微流体平台上的压力平衡现象开发被动液体阀(PLV)

摘要

In this paper, we propose an easy-to-implement passive liquid valve (PLV) for the microfluidic compact-disc (CD). This valve can be implemented by introducing venting chambers to control the air flow of the source and destination chambers. The PLV mechanism is based on equalizing the main forces acting on the microfluidic CD (i.e., the centrifugal and capillary forces) to control the burst frequency of the source chamber liquid. For a better understanding of the physics behind the proposed PLV, an analytical model is described. Moreover, three parameters that control the effectiveness of the proposed valve, i.e., the liquid height, liquid density, and venting chamber position with respect to the CD center, are tested experimentally. To demonstrate the ability of the proposed PLV valve, microfluidic liquid switching and liquid metering are performed. In addition, a Bradford assay is performed to measure the protein concentration and evaluated in comparison to the benchtop procedure. The result shows that the proposed valve can be implemented in any microfluidic process that requires simplicity and accuracy. Moreover, the developed valve increases the flexibility of the centrifugal CD platform for passive control of the liquid flow without the need for an external force or trigger.
机译:在本文中,我们提出了一种易于实现的用于微流体光盘(CD)的被动液体阀(PLV)。该阀可以通过引入通风室来控制源室和目标室的气流来实现。 PLV机制是基于均衡作用在微流体CD上的主力(即离心力和毛细力)来控制源室液体的爆破频率。为了更好地理解所提出的PLV背后的物理原理,我们描述了一种分析模型。而且,通过实验测试了控制所提出的阀的有效性的三个参数,即,液体高度,液体密度和相对于CD中心的排气室位置。为了证明所提出的PLV阀的功能,进行了微流体液体切换和液体计量。此外,进行Bradford分析以测量蛋白质浓度,并与台式程序进行比较。结果表明,所提出的阀可以在需要简单性和准确性的任何微流体过程中实施。而且,开发的阀增加了离心式CD平台的灵活性,从而无需外部力或扳机即可被动控制液体流量。

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