...
首页> 外文期刊>Selected Areas in Communications, IEEE Journal on >A Stochastic Model for Electron Transfer in Bacterial Cables
【24h】

A Stochastic Model for Electron Transfer in Bacterial Cables

机译:细菌电缆中电子转移的随机模型

获取原文
获取原文并翻译 | 示例
           

摘要

Biological systems are known to communicate by diffusing chemical signals in the surrounding medium. However, most of the recent literature has neglected the mechanism occurring among living cells, and its role in cell-cell communication. Each cell relies on a continuous flow of electrons from its electron donor to its electron acceptor through the electron transport chain to produce energy in the form of the molecule adenosine triphosphate, and to sustain the cell's vital operations and functions. While the importance of biological electron transfer is well-known for individual cells, the past decade has also brought about remarkable discoveries of multi-cellular microbial communities that transfer electrons between cells and across centimeter length scales, e.g., biofilms and multi-cellular bacterial cables. These experimental observations open up new frontiers in the design of electron-based communications networks in microbial communities, which may coexist with the more well-known communication strategies based on molecular diffusion, while benefiting from a much shorter communication delay. This paper develops a stochastic model that links the electron transfer mechanism to the energetic state of the cell. The model is also extensible to larger communities, by allowing for electron exchange between neighboring cells. Moreover, the parameters of the stochastic model are fit to experimental data available in the literature, and are shown to provide a good fit.
机译:已知生物系统通过在周围介质中扩散化学信号进行通信。但是,最近的大多数文献都忽略了活细胞之间发生的机制及其在细胞间通讯中的作用。每个细胞都依靠电子从电子供体到电子受体的连续流动,通过电子传输链产生三磷酸腺苷分子形式的能量,并维持细胞的重要运作和功能。尽管生物电子转移的重要性对于单个细胞来说是众所周知的,但在过去的十年中,也取得了令人瞩目的发现,即多细胞微生物群落可以在细胞之间和跨厘米长度范围内转移电子,例如生物膜和多细胞细菌电缆。这些实验观察结果为微生物群落电子通信网络的设计开辟了新的领域,可以与基于分子扩散的更为著名的通信策略共存,同时受益于更短的通信延迟。本文建立了一个随机模型,该模型将电子转移机制与细胞的高能态联系起来。通过允许相邻细胞之间的电子交换,该模型还可以扩展到更大的社区。此外,随机模型的参数与文献中提供的实验数据拟合,并显示出很好的拟合度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号