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A Theoretical Examination of Ionic Interactions between Neural and Non-Neural Membranes

机译:神经和非神经膜之间离子相互作用的理论研究

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摘要

Evidence from electron microscopy indicates that the separation between adjacent membranes of the central nervous system (CNS) is less than 500 A and perhaps as small as 100-250 A. The rapid K+ efflux associated with the neural action potential may therefore be sufficient to affect the local extracellular potassium concentration and, via their partial dependence upon the potassium equilibrium potential, alter the electrical states of nearby neural and glial membranes. This new concept of a transient and local depolarizing “ionic interaction” between active and inactive membranes of the CNS is here examined theoretically and its magnitude calculated as a function of (a) the intermembrane separation, (b) the membranes' electrochemical characteristics, and (c) the rate at which K+ can diffuse away from the vicinity of the active (neural) membrane. My results indicate that the interaction is in the millivolt range and therefore significant in the modulation of postsynaptic and presynaptic information processing; in particular configurations the postulated interaction alone may be suprathreshold. Membrane noise and local synchrony in groups of neurons may reflect these local, K+-mediated interactions. The transient ionic interaction between active neural and nearby glial membrane is also in the millivolt range; however, the relevance of neuroglia to neuronal function is obscure. Certain pathological states, such as seizure and spreading depression, have an obvious phenomenological correspondence to the results presented here and are briefly discussed.
机译:电子显微镜的证据表明,中枢神经系统(CNS)相邻膜之间的间隔小于500 A,并且可能小至100-250A。与神经相关的快速K + 外流因此,动作电位可能足以影响局部细胞外钾浓度,并通过其对钾平衡电位的部分依赖性来改变附近神经和神经胶质膜的电状态。本文从理论上研究了CNS活性膜和非活性膜之间瞬态和局部去极化“离子相互作用”的新概念,并根据(a)膜间分离,(b)膜的电化学特性和(c)K + 可以扩散到活性(神经)膜附近的速率。我的结果表明,相互作用在毫伏范围内,因此在突触后和突触前信息处理的调制中具有重要意义。在特定配置中,仅假定的相互作用可以是阈值之上。神经元组中的膜噪声和局部同步性可能反映了这些局部的K + 介导的相互作用。活性神经和附近神经胶质膜之间的瞬时离子相互作用也在毫伏范围内;然而,神经胶质细胞与神经元功能的相关性尚不清楚。某些病理状态,例如癫痫发作和抑郁扩散,与此处介绍的结果在现象上具有明显的对应关系,并进行了简要讨论。

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