Pan Linqiang, Wu Tingfang, Su Yansen, Vasilakos Athanasios V
IEEE Trans Nanobioscience. 2017 Sep;16(6):513-522. doi: 10.1109/TNB.2017.2722466. Epub 2017 Jul 3.
Cell-like spiking neural (cSN) P systems are a class of distributed and parallel computation models inspired by both the way in which neurons process information and communicate to each other by means of spikes and the compartmentalized structures of living cells. cSN P systems have been proved to be Turing universal if more spikes can be produced by consuming some spikes or spikes can be replicated. In this paper, in order to answer the open problem whether this functioning of producing more spikes and replicating spikes can be avoided by using some strategy without the loss of computation power, we introduce cSN P systems with request rules, which have classical spiking rules and forgetting rules, and also request rules in the skin membrane. The skin membrane can receive spikes from the environment by the application of request rules. cSN P systems with request rules are proved to be Turing universal. The results show that the decrease of computation power caused by removing the internal functioning of producing more spikes and replicating spikes can be compensated by request rules, which suggests that the communication between a cell and the environment is an essential ingredient of systems in terms of computation power.
类细胞脉冲神经(cSN)P系统是一类分布式并行计算模型,其灵感来源于神经元处理信息以及通过脉冲相互通信的方式,还有活细胞的区室化结构。如果通过消耗一些脉冲可以产生更多脉冲或者可以复制脉冲,那么cSN P系统已被证明具有图灵通用性。在本文中,为了回答是否可以通过某种策略避免产生更多脉冲和复制脉冲的这种功能而又不损失计算能力这一开放性问题,我们引入了带请求规则的cSN P系统,该系统具有经典的脉冲规则和遗忘规则,并且在皮肤膜中还有请求规则。皮肤膜可以通过应用请求规则从环境中接收脉冲。带请求规则的cSN P系统被证明具有图灵通用性。结果表明,去除产生更多脉冲和复制脉冲的内部功能所导致的计算能力下降可以通过请求规则得到补偿,这表明细胞与环境之间的通信在计算能力方面是系统的一个重要组成部分。