Effects of Hypoxia on Conduction Velocity of Ventricular Muscle
スポンサーリンク
概要
- 論文の詳細を見る
The effects of hypoxia on the conduction of excitation in ventricular muscle were examined. Transmembrane action potentials and isometric tension of isolated rabbit papillary muscle were monitored simultaneously. When the preparations were exposed to hypoxia, the action potential duration (APD) shortened progressively and conduction velocity, assessed by the interval between two action potentials, decreased appreciably. This conduction delay was always accompanied by an increase in resting tension (RT). The upstroke velocity of the action potentials, however, was virtually unaffected by 60min of hypoxia. When the perfusate was reoxygenated, the APD, conduction velocity and RT recovered. The conduction delay and elevation of RT due to hypoxia were prevented by verapamil or a low [Ca]0 medium and were potentiated by isoproterenol. These results suggest that a cytoplasmic Ca++ accumulation, resulting in intercellular electrical uncoupling, may contribute to the conduction delay during hypoxia.
- International Heart Journal刊行会の論文
著者
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Kodama Itsuo
Department of Cardiovascular Research, Research Institute of Environmental Medicine, Nagoya Universi
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YAMADA Kazuo
Department of Biochemistry, Faculty of Medicine, Shimane University
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Shimizu Takeshi
Department of Biochemistry and Genome Biology, Hirosaki University Graduate School of Medicine
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Shimizu Takeshi
Department Of Biochemistry And Genome Biology Hirosaki University Graduate School Of Medicine
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Toyama Junji
Department Of Circulation And Respiration The Research Institute Of Environmental Medicine Nagoya Un
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Furuta Tatsuji
Department of Circulation and Respiration, The Research Institute of Environmental Medicine, Nagoya
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Furuta Tatsuji
Department Of Cardiology Anjo Kosei Hospital
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Furuta Tatsuji
Department Of Circulation And Respiration The Research Institute Of Environmental Medicine Nagoya Un
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Kodama Itsuo
Department Of Cardiovascular Research R.i.e.m. Nagoya University
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Toyama Junji
Department Of Cardiology Aichi Prefectural Owari Hospital Cardiovascular Center
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Yamada Kazuo
Department Of Architecture Faculty Of Engineering Aichi Institute Of Technoligy
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SHIMIZU Takeshi
Department of Circulation and Respiration, the Research Institute of Environmental Medicine, Nagoya University
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Furuta Tatsuji
Department of Circulation and Respiration, The Research Institute of Environmental Medicine, Nagoya University
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Yamada Kazuo
Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University
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