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Dynamics modeling and analysis of inkjet technology-based oligo DNA microarray spotting

机译:基于喷墨技术的寡DNA微阵列点样动力学建模与分析

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Oligo deoxyribonucleic-acid (DNA) microarrays are fabricated through in-situ chemical synthesis. Contact and fluid dynamics contribute to this process. To produce high-quality oligo DNA microarrays, it is important to well understand the dynamics of the fabrication process. Much work has been done in understanding the chemistry principles. However, few studies have been conducted from the mechanics point of view. This paper proposes a contact dynamics model of inkjet technology-based oligo DNA microarray spotting process. The proposed dynamics model can reasonably well explain the dynamics of the oligo DNA microarray spotting process. Note to Practitioners-This research was motivated by the need to develop a dynamics model for analyzing the inkjet technology-based oligo deoxyribonucleic-acid (DNA) microarray spotting process. Modeling techniques for microanoscale dynamics have not been well established in the open literature. This case study shows how this can be done for DNA spotting dynamics. Contact dynamics, electrostatic forces, viscous forces, and van der Waals forces have all been considered in this study. The method may be extended to model and analyze the dynamics of other biological particle spotting processes as well.
机译:寡聚脱氧核糖核酸(DNA)微阵列是通过原位化学合成制备的。接触和流体动力学有助于该过程。要生产高质量的寡核苷酸DNA微阵列,重要的是要充分了解制造过程的动力学。在理解化学原理方面已经做了很多工作。但是,从力学的角度来看,很少进行研究。本文提出了一种基于喷墨技术的寡DNA微阵列点样过程的接触动力学模型。所提出的动力学模型可以合理地解释寡核苷酸DNA微阵列点样过程的动力学。给从业者的注意-此研究的动机是需要开发动力学模型来分析基于喷墨技术的寡聚脱氧核糖核酸(DNA)微阵列点样过程。在公开文献中还没有很好地建立用于微观/纳米尺度动力学的建模技术。该案例研究显示了如何进行DNA点样动力学。这项研究已考虑了接触动力学,静电力,粘性力和范德华力。该方法还可以扩展为对其他生物颗粒点样过程的动力学进行建模和分析。

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