School of Engineering and Sciences, Tecnologico de Monterrey, Ave. Eugenio Garza Sada 2501, Monterrey 64849, NL, Mexico.
Lab Chip. 2020 Apr 21;20(8):1318-1357. doi: 10.1039/c9lc00775j. Epub 2020 Apr 3.
Centrifugal microfluidic platforms or lab-on-discs (LODs) have evolved into a popular technology for automating chemical and biological assays. LODs today enable scientists to implement and integrate different operational units, including fluid mixing, droplet generation, cell-sorting, gene amplification, analyte detection, and so forth. For an efficient design and cost-effective implementation of any microfluidic device, including LODs, theoretical analysis and considerations should play a more important role than they currently do. The theoretical analysis we will show is especially essential to the investigation of detailed phenomena at the small length scales and high-speed typical for LODs where a wide range of forces may be involved. Previous LOD review papers presented mostly experimental results with theory as an afterthought. Hence, a review paper focused on the theoretical aspects, and associated computational studies of LOD devices is an urgent need. In the present review paper, all previous computational studies on LOD devices are categorized as single-phase flows, two-phase flows, network simulation, and solids. For each of these categories, the governing equations and important formulas are presented and explained. Moreover, a handy scaling analysis is introduced to aid scientists when comparing different competing forces in LOD devices. We hope that by surveying and contrasting various theoretical LOD studies, we shed some light on existing controversies and reveal where additional theoretical work is needed.
离心微流控平台或盘上实验室(LOD)已经发展成为自动化化学和生物学分析的热门技术。今天的 LOD 使科学家能够实现和集成不同的操作单元,包括流体混合、液滴生成、细胞分选、基因扩增、分析物检测等。为了有效地设计和经济有效地实施任何微流控设备,包括 LOD,理论分析和考虑应该比目前发挥更重要的作用。我们将展示的理论分析对于研究 LOD 中典型的小尺寸和高速的详细现象尤其重要,因为 LOD 中可能涉及到广泛的力。以前的 LOD 综述论文主要展示了实验结果,而理论只是事后的想法。因此,需要有一篇专门关注 LOD 设备理论方面和相关计算研究的综述论文。在本综述论文中,所有以前关于 LOD 设备的计算研究都被归类为单相流、两相流、网络模拟和固体。对于这些类别中的每一个,都给出并解释了控制方程和重要公式。此外,引入了一种方便的缩放分析,以帮助科学家在比较 LOD 设备中的不同竞争力时使用。我们希望通过调查和对比各种理论 LOD 研究,揭示存在的争议,并指出需要进一步的理论工作。