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麻醉犬冠状动脉和心室感受器的传入放电

Afferent discharges from coronary arterial and ventricular receptors in anaesthetized dogs.

作者信息

Drinkhill M J, Moore J, Hainsworth R

机构信息

Academic Unit of Cardiovascular Studies, University of Leeds.

出版信息

J Physiol. 1993 Dec;472:785-99. doi: 10.1113/jphysiol.1993.sp019973.

Abstract
  1. Previous work has shown that increases in aortic root pressure result in reflex vasodilation, and that this response is likely to result mainly from stimulation of receptors in the coronary arteries, although contribution from left ventricular receptors was not excluded. This investigation was undertaken to resolve this question and to determine the afferent nerve fibres likely to be involved in this reflex. 2. In chloralose-anaesthetized dogs a perfusion circuit was used which allowed us to change the pressures in: (a) the aortic root, coronary arteries and the left ventricle; (b) aortic root and coronary arteries at constant ventricular pressure; and (c) the left ventricle with mean (although not pulse) aortic pressure constant. Electrophysiological recordings were made from slips dissected from the vagus nerve which responded with an increase in discharge to either combined increases in the pressures, or to aortic root injections of veratridine. 3. Recordings were made from twenty-one vagal afferents. On the basis of their conduction velocities, eleven were classified as non-myelinated and ten as myelinated. 4. Three non-myelinated afferents responded to veratridine injections only, three to both veratridine and combined aortic root and ventricular pressure changes, and five to pressure changes only. Responses to pressure occurred only when ventricular systolic pressure exceeded 30 kPa. 5. None of the myelinated afferents responded to veratridine. All showed increases in discharge to combined increases in mean aortic root, coronary arterial and left ventricular systolic pressures, which would be graded over a range similar to that which caused reflex changes. All were more sensitive to changes in mean coronary pressure than to changes in ventricular systolic pressure. 6. We conclude that myelinated vagal afferent nerve fibres, which respond predominantly to changes in mean coronary arterial pressure, are likely to be responsible for the vasodilation to the changes in mean aortic root pressure previously reported. These fibres are probably attached to coronary arterial mechanoreceptors.
摘要
  1. 先前的研究表明,主动脉根部压力升高会导致反射性血管舒张,并且这种反应可能主要源于冠状动脉中受体的刺激,尽管不排除左心室受体的作用。进行这项研究是为了解决这个问题,并确定可能参与这种反射的传入神经纤维。2. 在水合氯醛麻醉的犬中,使用了一个灌注回路,使我们能够改变以下部位的压力:(a) 主动脉根部、冠状动脉和左心室;(b) 在心室压力恒定的情况下改变主动脉根部和冠状动脉的压力;(c) 在平均(而非脉压)主动脉压力恒定的情况下改变左心室压力。从迷走神经分离出的神经束进行电生理记录,这些神经束对压力联合升高或主动脉根部注射藜芦碱时放电增加做出反应。3. 对21条迷走神经传入纤维进行了记录。根据它们的传导速度,11条被归类为无髓鞘纤维,10条为有髓鞘纤维。4. 3条无髓鞘传入纤维仅对藜芦碱注射有反应,3条对藜芦碱以及主动脉根部和心室压力联合变化均有反应,5条仅对压力变化有反应。对压力的反应仅在心室收缩压超过30 kPa时出现。5. 所有有髓鞘传入纤维对藜芦碱均无反应。所有纤维在主动脉根部平均压、冠状动脉和左心室收缩压联合升高时放电均增加,其分级范围与引起反射变化的范围相似。所有纤维对平均冠状动脉压力变化比对心室收缩压变化更敏感。6. 我们得出结论,主要对平均冠状动脉压力变化做出反应的有髓鞘迷走神经传入纤维,可能是先前报道的对平均主动脉根部压力变化产生血管舒张反应的原因。这些纤维可能附着于冠状动脉机械感受器。

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本文引用的文献

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MECHANORECEPTORS IN OR NEAR THE CORONARY ARTERIES.冠状动脉内或其附近的机械感受器。
J Physiol. 1965 Mar;177(2):203-14. doi: 10.1113/jphysiol.1965.sp007586.

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