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首页> 外文期刊>Japanese Journal of Pharmacology >Influence of Carotid Chemoreceptors on the Vagal Reflex-Induced Tracheal Constriction
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Influence of Carotid Chemoreceptors on the Vagal Reflex-Induced Tracheal Constriction

机译:颈动脉化学感受器对迷走神经反射引起的气管收缩的影响

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References(27) In this study, the effects of carotid chemoreceptors on reflex tracheal constriction were investigated in anesthetized, paralyzed, and artificially ventilated mongrel dogs. Reflex tracheal constriction was measured as changes in the intratracheal pressure of an air-filled balloon introduced into the rostral side of the transected trachea. A hypoxic condition was produced by ventilating the dog with 12%O2-88% N2. The reflex tracheal constriction induced by histamine inhalation to the bronchial side was reduced by section of the bilateral sinus nerves. The hypoxic condition significantly potentiated the reflex tracheal constriction induced by histamine inhalation. The potentiated reflex tracheal constriction during hypoxia was abolished by section of the bilateral sinus nerves. The afferent electrical stimulation to the central cut end of the vagus nerve caused a reflex tracheal constriction. The reflex tracheal constriction was significantly potentiated by hypoxia, and the potentiating response was abolished by section of the bilateral sinus nerves. The infusion of NaCN into the bilateral carotid arteries significantly potentiated the reflex tracheal constriction. The NaCN-induced potentiating effect was abolished by section of the bilateral sinus nerves. These results suggest that hypoxia potentiates the vagal reflex-induced tracheal constriction and that the hypoxia-induced potentiating effects may be mediated by carotid chemoreceptors.
机译:参考文献(27)在这项研究中,研究了麻醉,瘫痪和人工通气的杂种犬的颈动脉化学感受器对反射性气管收缩的影响。反射性气管收缩是通过引入气管的气管侧的充气气球的气管内压力的变化来测量的。通过给狗通入12%O2-88%N2的通气来产生低氧状态。组胺吸入支气管侧引起的反射性气管收缩被双侧鼻窦神经部分减少。低氧状态显着增强了吸入组胺引起的反射性气管收缩。缺氧时增强的反射性气管收缩被双侧窦神经节消除。迷走神经中央切口的传入电刺激引起反射性气管收缩。缺氧可显着增强反射性气管收缩,双侧窦神经节段可消除增强反应。 NaCN注入双侧颈动脉明显增强了反射性气管收缩。 NaCN诱导的增强作用被双侧窦神经节消除。这些结果表明,低氧增强迷走神经反射诱导的气管收缩,并且低氧诱导的增强作用可能由颈动脉化学感受器介导。

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