Systemic alternation of depolarization sites in the postsynaptic membrane: a biomathematical model

H.K. Brown
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Abstract

We propose a preliminary mathematical model and simulation of temporally and spatially patterned alternation of postsynaptic depolarization sites as a hypothetical function of structural changes in the target neuron biomembrane. Our model demonstrates that observed state changes in a target neuron are not only a function of phase relationships among excitatory and inhibitory inputs but of where within the cell the last action potential was initiated. Neurobiological evidence indicates that the observed changes may be a function of altered molecular positions and orientation within the target membrane lattice. We conclude with a brief discussion of the possible role of the system in the regulation of electrical signals.
突触后膜去极化位点的系统交替:一个生物数学模型
我们提出了一个初步的数学模型,并模拟了突触后去极化位点在时间和空间上的变化,作为目标神经元生物膜结构变化的假设功能。我们的模型表明,在目标神经元中观察到的状态变化不仅是兴奋性和抑制性输入之间的相位关系的函数,而且是细胞内最后一个动作电位启动的位置的函数。神经生物学证据表明,观察到的变化可能是靶膜晶格内分子位置和取向改变的功能。最后,我们简要讨论了该系统在电信号调节中的可能作用。
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