Camille L. G. Lambert, Guido van Mierlo, Johannes J. Bues, Orane J. Guillaume-Gentil, Bart Deplancke
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引用次数: 0
Abstract
The adoption of microfluidics was fundamental to the development of cost-effective, high-throughput DNA sequencing. As the field progresses towards multi-omics, we reflect on the key concepts underlying microfluidics and how resulting engineering advances at the microscale drove the evolution of genomic sequencing. The adoption of microfluidics was fundamental to the development of cost-effective, high-throughput DNA sequencing. As the field progresses towards multi-omics, Lambert et al. reflect on the key concepts underlying microfluidics and how resulting engineering advances at the microscale drove the evolution of genomic sequencing.
微流控技术的采用是开发具有成本效益的高通量 DNA 测序技术的基础。随着多组学领域的发展,我们思考了微流控技术的关键概念,以及由此产生的微尺度工程技术进步如何推动了基因组测序的发展。微流控技术的采用是开发具有成本效益的高通量 DNA 测序技术的基础。随着多组学领域的发展,Lambert 等人反思了微流控技术的关键概念,以及由此产生的微尺度工程技术进步如何推动了基因组测序的发展。
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