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The electrical basis for contraction and relaxation in canine fundal smooth muscle

机译:犬基底部平滑肌收缩和松弛的电学基础

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摘要

1. Mechanical and intracellular electrical activities were recorded simultaneously from canine fundal and antral smooth muscle preparations.2. Most fundal preparations displayed no spontaneous electrical or mechanical activity. The tissue had a space constant of 1·5 mm and a time constant of 189 msec and showed outward rectification in response to depolarizing current.3. Transmural nerve stimulation of fundal preparations demonstrated the presence of cholinergic excitatory and non-cholinergic, non-adrenergic inhibitory neural inputs to the tissue. The cholinergic nerve response consisted of a small, graded depolarization accompanied by a slow graded contraction; the inhibitory nerve response consisted of a graded hyperpolarization accompanied by a slow relaxation.4. The excitatory fundal nerve response was abolished or greatly diminished by D600 and Mn2+. D600 and Mn2+ also decreased basal tone. The inhibitory nerve response was unaffected by either agent.5. The excitatory nerve response in the fundus was contrasted with the excitatory nerve response in the antrum. In the fundus, stimulation of cholinergic motor nerves produced a depolarization which always produced a contraction. In the antrum, stimulation of cholinergic motor nerves between action potentials produced graded depolarizations of antral cells; however, there were no associated contractions. Stimulation of cholinergic motor nerves during spontaneous action potentials increased the amplitude and duration of the plateau phase of the action potential; this was associated with an augmentation of the spontaneous contractions.6. Voltage—tension curves were determined for antral and fundal preparations using K+ depolarization as a means of controlling membrane potential. Antral preparations displayed a voltage threshold for contraction at a membrane potential approximately 30 m V positive to the resting potential. In cntrast, fundal resting potentials were at or more positive than their voltage thresholds.7. These differences in electromechanical coupling provide an explanation for the marked differences in the responses of fundal and antral smooth muscles to nerve stimulation and account for their physiologic function in vivo.
机译:1.同时记录犬眼底和肛门平滑肌制剂的机械和细胞内电活动。2。大多数基础制剂没有自发的电活动或机械活动。该组织的空间常数为1·5mm,时间常数为189毫秒,并响应去极化电流而显示出向外的矫正。3。透壁神经对基础制剂的刺激表明存在胆碱能兴奋性和非胆碱能,非肾上腺素抑制性神经输入组织。胆碱能神经反应包括一个小的,渐进的去极化以及缓慢的渐进收缩。抑制性神经反应包括逐渐超极化并伴有缓慢放松。4。 D600和Mn 2 + 消除了兴奋性眼底神经反应或使之大大减弱。 D600和Mn 2 + 也降低了基调。抑制神经反应不受任何一种药物的影响。5。眼底的兴奋性神经反应与胃窦的兴奋性神经反应形成对比。在眼底,胆碱能运动神经的刺激产生去极化,该去极化总是产生收缩。在胃窦中,在动作电位之间刺激胆碱能运动神经会导致窦房细胞的分级去极化。但是,没有相关的收缩。自发动作电位期间胆碱能运动神经的刺激增加了动作电位平台期的幅度和持续时间;这与自发性收缩的增加有关。6。使用K + 去极化作为控制膜电位的方法,确定了肛门和眼底制剂的电压-张力曲线。窦性制剂在约30 m V的膜电位处呈静息电位,显示收缩的电压阈值。相反,眼底静息电位等于或大于其电压阈值。7。机电耦合的这些差异为足底和肛门平滑肌对神经刺激的反应存在明显差异提供了解释,并说明了它们在体内的生理功能。

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