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A New Mechanism for the Plasma Separation from Whole Blood on the Lab-on-a-Disk Systems Based on Moment of Inertia Method

机译:基于惯性方法的实验室磁盘系统中全血等离子体分离的新机制

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The biomedical diagnostic devices based on the microfluidics technology has shown high potential for increasing the accuracy and precision of several blood tests. Plasma separation is a critical step in general whole blood analysis. Lab-on-a-disk as a platform for implementing the microfluidic specifications provides suitable conditions for preforming blood analysis operations. We presented a novel method based on this technology for pure plasma preparation from whole blood. Three different models are developed and validated which contains two main sections for plasma separation and collecting. Moment of inertia method which is a newly presented passive method for liquid pumping in centrifugal microfluidic platforms, is utilized in this study for plasma collecting step. The results show that a maximum collecting percentage of 51.5% of separated plasma is achievable.
机译:基于微流体技术的生物医学诊断装置表明了提高几种血液测试的准确性和精度的高潜力。血浆分离是一般全血分析的关键步骤。 Lab-on-A盘作为实现微流体规格的平台为预成形血液分析操作提供了适当的条件。我们提出了一种基于该技术的新方法,用于全血的纯等离子体制剂。开发和验证了三种不同的型号,其中包含两个用于等离子体分离和收集的主要部分。本研究采用了一种新呈现用于离心微流体平台中液体泵送的新呈现的被动方法的惯性方法,用于等离子体收集步骤。结果表明,可实现51.5%的分离等离子体的最大收集百分比。

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