ANISOTROPIC CONDUCTION PROPERTIES OF CANINE VENTRICULAR MUSCLES : Influence of High Extracellular K^+ Concentration and Stimulation Frequency
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概要
- 論文の詳細を見る
The effects of fiber direction on the conduction of excitation and the characteristics of both extracellular and intracellular action potentials were examined in isolated dog ventricular muscle preparations. Conduction velocity and amplitude of extracellular potentials during propagation in the direction parallel to the long axis of fibers (longitudinal propagation) were significantly greater than those during propagation in the direction perpendicular to it (transverse propagation). However, the maximum rate of rise and amplitude of intracellular action potential were significantly greater during transverse propagation than during longitudinal propagation. Compared with the transverse propagation, the longitudinal propagation was more susceptible to conduction failure under high extracellular K^+ concentration, suggesting a lower safety factor of the latter mode of propagation in depolarized cardiac tissue. In contrast, high frequency stimulation caused a greater decrease in the conduction velocity during transverse than longitudinal propagation resulting in augmentation of anisotropic conduction properties. These results suggest that the anisotropic conduction properties of cardiac tissue may play important roles in conduction disturbances leading to arrhythmias under various pathological conditions.
- 社団法人日本循環器学会の論文
- 1985-05-20
著者
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Kodama Itsuo
The Research Institute Of Environmental Medicin Nagoya University
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TOYAMA Junji
The Research Institute of Environmental Medicin,Nagoya University
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Tsuboi Naoya
Division Of Cardiology Chukyo Hospital And Nagoya University School Of Health Sciences
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Tsuboi Naoya
名古屋大学 大学院医学系研究科循環器内科
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Tsuboi Naoya
Cardiovascular Center Nagoya Daini Red Cross Hospital
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Toyama Junji
名古屋大学 大学院医学系研究科循環器内科
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Yamada Kazuo
The Res. Inst. of Environm. Med., Nagoya Univ.
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Toyama Junji
The Research Institute Of Environmental Medicin Nagoya University
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Toyama Junji
Department Of Circulation Division Of Regulation Of Organ Function Research Institute Of Environment
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TSUBOI NAOYA
The Research Institute of Environmental Medicine, Nagoya University
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