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Run-Length Encoding Graphic Rules Applied to DNA-Coded Images and Animation Editable by Polymerase Chain Reactions

机译:行程编码图形规则应用于可通过聚合酶链反应编辑的DNA编码图像和动画

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摘要

We previously proposed novel designs for artificial genes as media for storing digitally compressed image data, specifically for biocomputing by analogy to natural genes mainly used to encode proteins. A run-length encoding (RLE) rule had been applied in DNA-based image data processing, to form coding regions, and noncoding regions were created as space for designing biochemical editing. In the present study, we apply the RLE-based image-coding rule to creation of DNA-based animation. This article consisted of three parts: (i) a theoretical review of RLE-based image coding by DNA, (ii) a technical proposal for biochemical editing of DNA-coded images using the polymerase chain reaction, and (iii) a minimal demonstration of DNA-based animation using simple model images encoded on short DNA molecules.
机译:我们之前提出了针对人工基因的新颖设计,以作为存储数字压缩图像数据的介质,特别是通过与主要用于编码蛋白质的天然基因进行类比进行生物计算。在基于DNA的图像数据处理中应用了运行长度编码(RLE)规则,以形成编码区,并创建了非编码区作为设计生化编辑的空间。在本研究中,我们将基于RLE的图像编码规则应用于基于DNA的动画的创建。本文由三部分组成:(i)对基于RLE的DNA图像编码的理论综述,(ii)使用聚合酶链反应对DNA编码图像进行生化编辑的技术建议,以及(iii)使用短DNA分子上编码的简单模型图像进行基于DNA的动画。

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