Guest Editorial Plenty of Room at at Bottom: Ten Years of DNA-Based Data Storage

IF 2.4 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Molecular, Biological, and Multi-Scale Communications Pub Date : 2024-06-18 DOI:10.1109/TMBMC.2024.3408174
Han Mao Kiah;Paul H. Siegel;Eitan Yaakobi
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Abstract

This special issue places the spotlight on the coding problems and solutions related to storing digital information on synthetic DNA strands and we are fortunate to present a collection of 9 outstanding manuscripts showcasing new developments in this area. The articles contain exciting recent results covering all aspects of the DNA data storage system: from synthesis to sequencing. We extend our gratitude to the authors of all submitted manuscripts, the anonymous referees, editorial staff Christina Keller and the Editor-in-Chief Sasitharan Balasubramaniam. We are excited about this issue and hope it will serve as both a useful reference and an inspiration for future work in this area.
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特约编辑:底部空间充足:基于 DNA 的数据存储十年
本期特刊聚焦与在合成 DNA 链上存储数字信息有关的编码问题和解决方案,我们有幸收录了 9 篇优秀稿件,展示这一领域的新进展。这些文章包含令人振奋的最新成果,涵盖了 DNA 数据存储系统的各个方面:从合成到测序。我们向所有投稿的作者、匿名审稿人、编辑 Christina Keller 和主编 Sasitharan Balasubramaniam 表示感谢。我们对本期杂志感到非常兴奋,希望它既能作为有用的参考资料,又能对这一领域未来的工作有所启发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.90
自引率
13.60%
发文量
23
期刊介绍: As a result of recent advances in MEMS/NEMS and systems biology, as well as the emergence of synthetic bacteria and lab/process-on-a-chip techniques, it is now possible to design chemical “circuits”, custom organisms, micro/nanoscale swarms of devices, and a host of other new systems. This success opens up a new frontier for interdisciplinary communications techniques using chemistry, biology, and other principles that have not been considered in the communications literature. The IEEE Transactions on Molecular, Biological, and Multi-Scale Communications (T-MBMSC) is devoted to the principles, design, and analysis of communication systems that use physics beyond classical electromagnetism. This includes molecular, quantum, and other physical, chemical and biological techniques; as well as new communication techniques at small scales or across multiple scales (e.g., nano to micro to macro; note that strictly nanoscale systems, 1-100 nm, are outside the scope of this journal). Original research articles on one or more of the following topics are within scope: mathematical modeling, information/communication and network theoretic analysis, standardization and industrial applications, and analytical or experimental studies on communication processes or networks in biology. Contributions on related topics may also be considered for publication. Contributions from researchers outside the IEEE’s typical audience are encouraged.
期刊最新文献
Table of Contents IEEE Transactions on Molecular, Biological, and Multi-Scale Communications Publication Information Guest Editorial Introduction to the Special Feature on the 8th Workshop on Molecular Communications Guest Editorial Special Feature on Seeing Through the Crowd: Molecular Communication in Crowded and Multi-Cellular Environments IEEE Communications Society Information
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