With help of WLC model of inhibition nervous system and lobster neural structure of Mulloney's, neuron electric spike of lobster stomatogastric neural system was numerically analyzed and the changing activity of gastric network and pyloric network were obtained. 利用抑制神经系统的WinnerLessCompetition(WLC)模型,通过数值方法分析Mulloney型龙虾胃肠神经系统神经元的电位发放,得到胃研磨囊和幽门神经系统中各个神经元的电位发放和系统的节律变化。
The numerical results of these two neural systems not only explained the relation between electric spike and movement of muscle but also revealed rhythm activity and experiment phenomena of lobster stomatogastric neural system in theoretical model. 两个神经系统的数值结果,不仅解释了龙虾胃肠神经系统中神经元电位发放与肌肉运动的关系,而且理论再现了龙虾胃肠神经系统的节律变化和实验结果。
The numerical analysis of lobster stomatogastric nervous system 龙虾胃肠神经系统的数值分析
The stomatogastric nervous system consisted of connectives composed of frontal ganglion and occipital ganglion, which were located in the front and the back of brain respectively. 口道交感神经系统由位于脑前方食道背面的额神经节和位于脑后方的后头神经节组成的神经连锁构成。
The lobster stomatogastric pyloric rhythm generator is one kind of CPG. It is implemented and how it can maintain phase is analyzed briefly. 龙虾胃幽门节律发生器是一个简单的CPG,本文实现了其正常工作时的动作电位,并简单分析了其相位保持的特性。