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乌龟嗅神经中细胞外钾离子和兴奋性的活动依赖性变化。

Activity-dependent changes in extracellular potassium and excitability in turtle olfactory nerve.

作者信息

Eng D L, Kocsis J D

出版信息

J Neurophysiol. 1987 Mar;57(3):740-54. doi: 10.1152/jn.1987.57.3.740.

Abstract

The excitability properties of turtle olfactory nerve (o.n.) were studied in vitro using potassium-sensitive microelectrodes (KSM), a modified sucrose gap chamber, and a standard nerve chamber to measure conduction velocity. A pronounced supernormal period (SNP), as indicated by increased conduction velocity of the o.n. fiber volley, lasting up to several seconds, was observed following a single stimulus. The compound action potential recorded in the sucrose gap chamber showed a prolonged depolarization with a similar time course to the SNP. When stimulation intensity was submaximal the response amplitude, and the extracellular potassium concentration [K+]o, continuously increased during repetitive stimulation. In contrast, when supramaximal stimuli were applied, the amplitude of the o.n. fiber volley was reduced during a high-frequency stimulus train for all responses after the initial one even though latency was maximally reduced, i.e., during supernormal conduction. Superfusion with various levels of K+ elicited changes in the excitability of the o.n. fibers. Small increases in [K+]o above the resting concentration of 2.6 mM led to an increase in resting excitability, whereas larger increases resulted in decreased excitability and conduction block. The SNP was eliminated when extracellular potassium was elevated between 3 and 4 mM above resting levels. Microstimulation of a small bundle of o.n. fibers led to an increase in [K+]o along the bundle but also around adjacent nonactivated fibers. The excitability of these neighboring nonactivated fibers was increased, further indicating the importance of activity-dependent changes in [K+]o in modulating axonal excitability. These results demonstrate the importance of activity-dependent increases in extracellular potassium in modulating nonmyelinated o.n. fiber excitability. They also indicate that increases in [K+]o and an associated membrane depolarization contribute to the increased excitability observed during fiber recruitment and the supernormal period.

摘要

采用钾敏感微电极(KSM)、改良蔗糖间隙室和标准神经室在体外研究了乌龟嗅神经(o.n.)的兴奋性特性,以测量传导速度。在单次刺激后,观察到o.n.纤维群的传导速度增加,表明存在明显的超常期(SNP),持续长达数秒。在蔗糖间隙室中记录的复合动作电位显示出延长的去极化,其时间进程与SNP相似。当刺激强度为次最大时,在重复刺激期间,反应幅度和细胞外钾浓度[K+]o持续增加。相反,当施加超最大刺激时,即使潜伏期最大程度缩短,即在超常传导期间,在高频刺激串期间,o.n.纤维群的幅度在初始反应后的所有反应中均降低。用不同水平的K+进行灌流会引起o.n.纤维兴奋性的变化。[K+]o比静息浓度2.6 mM略有增加会导致静息兴奋性增加,而较大幅度的增加则会导致兴奋性降低和传导阻滞。当细胞外钾升高至比静息水平高3至4 mM时,SNP消失。对一小束o.n.纤维进行微刺激会导致沿该束以及相邻未激活纤维周围的[K+]o增加。这些相邻未激活纤维的兴奋性增加,进一步表明[K+]o的活动依赖性变化在调节轴突兴奋性中的重要性。这些结果证明了细胞外钾的活动依赖性增加在调节无髓鞘o.n.纤维兴奋性中的重要性。它们还表明,[K+]o的增加和相关的膜去极化有助于在纤维募集和超常期观察到的兴奋性增加。

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