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在 Ba2+ 和高钾存在的情况下,兔左心房小梁“膜”慢反应的频率依赖性兴奋性。

Frequency-dependent excitability of "membrane" slow responses of Rabbit left atrial trabeculae in the presence of Ba2+ and high K+.

作者信息

Cukierman S, Paes de Carvalho A P

出版信息

J Gen Physiol. 1982 Jun;79(6):1017-39. doi: 10.1085/jgp.79.6.1017.

Abstract

Small trabeculae of rabbit left atrium immersed in TKBa solution (Tyrode with 10 mM K+ and 1 mM Ba2+) were used to study frequency dependence of "membrane" slow response excitability at long cycle lengths (greater than 1 s). In TKBa, stimuli generate graded, low-amplitude (2-15 mV) subliminal responses of variable long duration (up to 450 ms). A full all-or-none slow response is generated when a subliminal response depolarizes the membrane to about--35 mV. Subliminal response amplitude and rate of rise augment with stimulus intensity-duration product. For a fixed stimulus, the subliminal response is larger and faster at higher frequencies. Sudden changes in stimulus frequency or time course induce changes in subliminal response tha take four to eight cycles to attain steady state. For a fixed stimulus, slow response latency shortens progressively during the first few cycles after a sudden increase in frequency or when a rested preparation is excited (latency adaptation phenomenon, LAP). Slow response threshold stimulus requirements decrease during LAP (excitability hysteresis). The degree of excitability hysteresis is dependent on stimulation frequency and is more pronounced at higher frequencies. Frequency sensitivity of subliminal response (which causes frequency sensitivity of slow response excitability) is explained in terms of a transient state of enhancement set up by each stimulus. The enhanced state decays between stimuli with a half-time of approximately 4 s, thus allowing cumulative effects to become evident at rates above 0.1 Hz.

摘要

将兔左心房的小梁浸于TKBa溶液(含10 mM K⁺和1 mM Ba²⁺的台氏液)中,用于研究长心动周期(大于1秒)时“膜”慢反应兴奋性的频率依赖性。在TKBa中,刺激产生分级的、低幅度(2 - 15 mV)、持续时间可变(长达450毫秒)的阈下反应。当阈下反应使膜去极化至约 - 35 mV时,产生完全的全或无慢反应。阈下反应幅度和上升速率随刺激强度 - 持续时间乘积增加。对于固定刺激,在较高频率时阈下反应更大且更快。刺激频率或时程的突然变化会引起阈下反应的变化,这种变化需要4至8个周期才能达到稳态。对于固定刺激,在频率突然增加后或静息标本被兴奋后的最初几个周期内,慢反应潜伏期会逐渐缩短(潜伏期适应现象,LAP)。在LAP期间,慢反应阈值刺激要求降低(兴奋性滞后)。兴奋性滞后的程度取决于刺激频率,在较高频率时更明显。阈下反应的频率敏感性(导致慢反应兴奋性的频率敏感性)是根据每个刺激建立的增强瞬态来解释的。增强状态在刺激之间以约4秒的半衰期衰减,因此在高于0.1 Hz的频率下累积效应变得明显。

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