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首页> 外文期刊>International journal of nano and biomaterials >Extended nucleic acid memory as the future of data storage technology
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Extended nucleic acid memory as the future of data storage technology

机译:扩展核酸内存作为数据存储技术的未来

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摘要

The amount of operational data being generated at an exponential rate in various spheres of computing, in turn, has culminated in a pressure on the available silicon memory-constrained by its limited capacity. In recent times, research has been undertaken on DNA computing for memory technology where nucleic acid memory (NAM) was formulated and found to be an efficient alternative for storing a large amount of digital data in the molecular space. This work presents a new encoding scheme which efficiently maps the binary data into a hybrid system of standard as well as non-standard genetic nucleotides to achieve a higher data capacity. Comparative studies have been done with existing encoding schemes, moreover, this work demonstrates the use of unnatural base pairs like Ds-Px and Im-Na which exhibit high stability and high selectivity in a DNA molecule.
机译:依次以各种计算的各个球体中的指数速率产生的运行数据量在可用硅存储器上受到其限制的有限容量的压力。 最近,已经在用于制定核酸记忆(NAM)的记忆技术的DNA计算上进行了研究,并且发现是用于在分子空间中储存大量数字数据的有效替代方案。 该工作提出了一种新的编码方案,其有效地将二进制数据映射到标准的混合系统以及非标准遗传核苷酸,以实现更高的数据能力。 此外,对比较研究已经采用现有的编码方案进行,这项工作证明了在DNA分子中表现出高稳定性和高选择性的DS-Px和IM-Na等非自然碱对。

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