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心室舒张末期和收缩期压力对麻醉犬动作电位及时程的影响。

The effects of ventricular end-diastolic and systolic pressures on action potential and duration in anaesthetized dogs.

作者信息

Coulshed D S, Cowan J C, Drinkhill M J, Hainsworth R

机构信息

Department of Clinical Medicine, University of Leeds.

出版信息

J Physiol. 1992 Nov;457:75-91. doi: 10.1113/jphysiol.1992.sp019365.

DOI:10.1113/jphysiol.1992.sp019365
PMID:1297849
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1175718/
Abstract
  1. Although it is known that mechanical events in the heart influence the duration of the cardiac action potential, there is no quantitative information on the effects of independent changes in ventricular end-diastolic and systolic pressures. 2. Experiments were carried out on open-chest anaesthetized dogs in which the autonomic nervous influences on the heart were prevented and monophasic action potentials were recorded form the epicardial surface of the left ventricle. The duration of these action potentials was taken as the interval from the upstroke to the point of 90% repolarization. 3. Elevation of left ventricular peak systolic pressure, at constant end-diastolic pressure, significantly shortened the monophasic action potential. 4. Elevation of end-diastolic pressure at constant peak systolic pressure significantly lengthened the monophasic action potential. 5. Responses were not dependent on release of noradrenaline from sympathetic nerve terminals because they persisted after administration of bretylium tosylate. They were also not due to myocardial ischaemia because they persisted when coronary perfusion pressure was maintained at a constant high level. 6. Simultaneous recordings of changes in myocardial segment length showed the expected responses to changes in ventricular pressures: increases in shortening in response to increases in diastolic pressure and no consistent effect from changes in systolic pressure. 7. These investigations demonstrate the independent effects of changes in systolic and end-diastolic pressures on cardiac action potential duration. This effect is likely to be an effect of the mechanical events, i.e. contraction-excitation feedback. This response may be mediated through changes in myocardial fibre tension, the consequent changes in fibre shortening, or both.
摘要
  1. 虽然已知心脏中的机械事件会影响心脏动作电位的持续时间,但关于心室舒张末期压力和收缩期压力独立变化的影响,尚无定量信息。2. 对开胸麻醉犬进行实验,在实验中防止自主神经对心脏的影响,并从左心室心外膜表面记录单相动作电位。这些动作电位的持续时间被视为从上升支到复极化90%点的时间间隔。3. 在恒定舒张末期压力下,左心室峰值收缩压升高会显著缩短单相动作电位。4. 在恒定峰值收缩压下,舒张末期压力升高会显著延长单相动作电位。5. 这些反应不依赖于交感神经末梢去甲肾上腺素的释放,因为在给予溴苄铵后它们仍然存在。它们也不是由于心肌缺血,因为当冠状动脉灌注压力维持在恒定高水平时它们仍然存在。6. 心肌节段长度变化的同步记录显示了对心室压力变化的预期反应:舒张压力升高时缩短增加,收缩压力变化没有一致的影响。7. 这些研究证明了收缩期和舒张末期压力变化对心脏动作电位持续时间的独立影响。这种影响可能是机械事件的结果,即收缩-兴奋反馈。这种反应可能通过心肌纤维张力的变化、随之而来的纤维缩短变化或两者来介导。

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本文引用的文献

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Transient depolarisation and action potential alterations following mechanical changes in isolated myocardium.离体心肌机械变化后的瞬时去极化和动作电位改变
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