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개구리 대동맥의 활동전압 및 Pacemaker 전압에 관한 연구
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  • 개구리 대동맥의 활동전압 및 Pacemaker 전압에 관한 연구
  • The Action and Pacemaker Potential in the Frog Truncus Arteriosus
저자명
엄융의(Earm, Yung-E),성호경(Sung, Ho-Kyung)
간행물명
대한생리학회지
권/호정보
1982년|16권 2호(통권30호)|pp.119-128 (10 pages)
발행정보
대한생리학회|한국
파일정보
정기간행물|KOR|
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영문초록

The frog truncus arterious were studied with conventional glass microelectrode technique in order to elucidate the underlying mechanism of spontaneous pacemaker activity. The analyses were focussed on the ionic nature of pacemaker current by changing the concentrations of extracellular K+ and, Na+, or by using blockers of K- and Ca-current and chronotropic transmitters. 1) The action potential of the spontaneously active truncus arteriosus has some characteristic feature of maximal distolic potential ranged from -65 to -75 mV, resting potential from -45 to -50 mV and overshoot voltage about +30 mV, respectively. Duration of the action potential taken from rapid upstroke to maximal diastolic potential was about 600 msec. Usual discharge rate was 25 ~ 30/min at room temperature (18 ~ 20℃)$. 2) The sensitivity of the resting membrane potential to change extracellular potassium concentrations(0 ~ 12 mM) was relatively low. Transient hyperpolarization was appeared in the 12 mM K Ringer after 10 min exposure to 0 mM K and it could be related to Na-pump reactivation by high potassium. 3) Reduction of extracellular sodium concetrations diminished the amplitude and frequency of the action potential. In Ringer solution containing 30% Na (substituted by equimolar Tris), spontaneous activity stopped but reappeared as very slow and small action potential. There was no spotaneous activity in zero Na Ringer solution. 4) Caesium(10 mM), K-current blocker decreased the frequency of the action potential and also pacemaker depolarization. Manganese (2 mM) known to be Ca-current antagonist, blocked spontaneous activity completely. 5) Adrenaline and acetylcholine had no chronotropic effect. But adrenaline increased the duration of plateau phase and the magnitude of the action potential in the follower cell. It is concluded that K-, Na-and Ca-current components are involved in the genesis of spontaneous activity of the frog truncus arteriosus like cardiac pacemaker tissues. But the insensitivity of truncus arteriosus to adrenaline and acetylcholine indicates that there are some different control mechanisms of spontaneous rhythm in two tissues.

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