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Sensitivity of the electrical response of a node of Ranvier model to alterations of the myelin sheath geometry

机译:Ranvier 模型节点的电响应对髓鞘几何形状改变的敏感性

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摘要

Nodes of Ranvier play critical roles in the generation and transmission of action potentials. Alterations in node properties during pathology and/or development are known to affect the speed and quality of electrical transmission. From a modelling standpoint, nodes of Ranvier are often described by systems of ordinary differential equations neglecting or greatly simplifying their geometric structure. These approaches fail to accurately describe how fine scale alteration in the node geometry or in myelin thickness in the paranode region will impact action potential generation and transmission. Here, we rely on a finite element approximation to describe the three dimensional geometry of a node of Ranvier. With this, we are able to investigate how sensitive is the electrical response to alterations in the myelin sheath and paranode geometry. We could in particular investigate irregular loss of myelin, which might be more physiologically relevant than the uniform loss often described through simpler modelling approaches.
机译:Ranvier 的节点在动作电位的产生和传递中起着关键作用。已知在病理和/或发育过程中淋巴结特性的改变会影响电传输的速度和质量。从建模的角度来看,Ranvier的节点通常由常微分方程组来描述,而忽略了或大大简化了它们的几何结构。这些方法无法准确描述节点几何形状或副节点区域髓鞘厚度的精细尺度变化将如何影响动作电位的产生和传递。在这里,我们依靠有限元近似来描述 Ranvier 节点的三维几何形状。有了这个,我们能够研究电响应对髓鞘和旁节点几何形状变化的敏感程度。我们可以特别研究髓鞘的不规则损失,这可能比通常通过更简单的建模方法描述的均匀损失更具生理相关性。

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