论文标题
真菌的电活动:尖峰检测和复杂性分析
Electrical activity of fungi: Spikes detection and complexity analysis
论文作者
论文摘要
牡蛎真菌\ emph {pleurotus djamor}产生肌动蛋白电位,如电势。尖峰的火车可能表现出在底物中菌丝体生长的传播,营养素和代谢物的运输以及菌丝网网络中的通信过程。与神经活动相比,菌丝网网络的尖峰活动差异很大,因此无法通过神经科学的标准工具来分析。我们提出了用于检测和分类真菌尖峰活动的原始技术。使用这些技术,我们分析了真菌电活动的信息理论复杂性。结果可以为真菌的感官融合和决策做出研究铺平方法。
Oyster fungi \emph{Pleurotus djamor} generate actin potential like spikes of electrical potential. The trains of spikes might manifest propagation of growing mycelium in a substrate, transportation of nutrients and metabolites and communication processes in the mycelium network. The spiking activity of the mycelium networks is highly variable compared to neural activity and therefore can not be analysed by standard tools from neuroscience. We propose original techniques for detecting and classifying the spiking activity of fungi. Using these techniques, we analyse the information-theoretic complexity of the fungal electrical activity. The results can pave ways for future research on sensorial fusion and decision making of fungi.