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[细胞外钾离子浓度升高对迷走神经传出纤维作用于离体心房的影响的改变]

[Modification of efferent vagal effects on the isolated atrium by increased extracellular K+ concentrations].

作者信息

Nilius B, August C, Fritsch F

出版信息

Acta Biol Med Ger. 1977;36(7-8):1067-75.

PMID:612090
Abstract

Isolated vagal-innervated rabbit atria are electrically driven. Alterations of action potential, contraction, and electrotropic and inotropic vagal effects are investigated during variations of the external potassium concentration. Action potential area and contraction amplitude decrease by increasing external potassium concentration. If the potassium concentration is higher than 11 mM, the action potential disappears. At 24 mM potassium concentration the contraction amplitude of the driven atrium is reduced to 2%. Adrenaline (2.10(-5) g/ml) causes a restitution of the action potential and the contraction. With increasing potassium concentration the inotropic and the electrotropic vagal effectivity increases also. The vagal effects at the adrenaline restituted action potentials and contractions (15 mM potassium, 2.10(-5) g/ml adrenaline) are also higher than in normal solutions. The relations of electromechanical coupling are altered by potassium variation at the same coupling curve. With increasing potassium concentration the reproducibility of the vagal effects decreases.

摘要

对分离出的由迷走神经支配的兔心房进行电驱动。在外部钾浓度变化期间,研究动作电位、收缩以及迷走神经的电效应和变力效应的改变。随着外部钾浓度的增加,动作电位面积和收缩幅度减小。如果钾浓度高于11 mM,动作电位消失。在钾浓度为24 mM时,被驱动心房的收缩幅度降至2%。肾上腺素(2×10⁻⁵ g/ml)可使动作电位和收缩恢复。随着钾浓度的增加,迷走神经的变力效应和电效应效能也增加。在肾上腺素恢复动作电位和收缩时(15 mM钾,2×10⁻⁵ g/ml肾上腺素),迷走神经效应也高于正常溶液。在相同的耦合曲线上,钾的变化会改变机电耦合关系。随着钾浓度的增加,迷走神经效应的可重复性降低。

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