Design and wet-laboratory implementation of reliable end-to-end molecular communication

Design and wet-laboratory implementation of reliable end-to-end molecular communication
复制标题

DOI:
10.1007/s11276-016-1435-4
复制
发表时间:
2017-01
期刊:
影响因子:
3
通讯作者:
Taro Furubayashi;Y. Sakatani;T. Nakano;A. Eckford;N. Ichihashi
Taro Furubayashi;Y. Sakatani;T. Nakano;A. Eckford;N. Ichihashi
中科院分区:
计算机科学4区
文献类型:
--
作者:
Taro Furubayashi;Y. Sakatani;T. Nakano;A. Eckford;N. Ichihashi

文献摘要

相似文献

本文介绍了一种新颖的设计和湿实验室实现可靠的端到端分子通信。在本文描述的可靠的端到端分子通信中,源和目的地生物纳米机器通过能够进行数据包复制的中间生物纳米机器交换分子数据包。源生物纳米机器形成分子包并将分子包传输到环境中。一种中间生物纳米机器检测分子包,并通过包复制产生其副本。目的地生物纳米机器在接收到分子包时产生确认分子包并发送回源生物纳米机器。本文介绍了如何可靠的端到端的分子通信可以生化实现与RNA(核糖核酸)分子和人工细胞系统。它还描述了一个基于仿真的性能评估研究,显示了模型参数的影响,在可靠的端到端的分子通信的传播延迟。
This paper describes a novel design and wet laboratory implementation of reliable end-to-end molecular communication. In the reliable end-to-end molecular communication described in this paper, source and destination bio-nanomachines exchange molecular packets through intermediate bio-nanomachines that are capable of packet replication. A source bio-nanomachine forms a molecular packet and transmits the molecular packet into the environment. An intermediate bio-nanomachine detects a molecular packet and produces its copies through packet replication. A destination bio-nanomachine, upon reception of a molecular packet, produces an acknowledgment molecular packet and transmits back to the source bio-nanomachine. This paper describes how the reliable end-to-end molecular communication can be biochemically implemented with RNA (ribonucleic acid) molecules and artificial cell systems. It also describes a simulation-based performance evaluation study showing the impact of model parameters on propagation delay in the reliable end-to-end molecular communication.