Tsubone H
Exp Neurol. 1986 Jun;92(3):541-52. doi: 10.1016/0014-4886(86)90296-7.
To elucidate the characteristics of vagal afferent fibers arising from rat lungs, single-unit activity from pulmonary stretch receptors and two other types of pulmonary receptors was recorded. In the latter, one type of receptor, termed deflation-sensitive receptors in this study, was stimulated only in the expiratory phase of normal respiration. Moreover, this type of receptor exhibited persistent discharges resulting in a train or burst of impulses with collapse and forced deflation, respectively. The decrease of discharge frequency during collapse was slow and the average adaptation index was 20%, indicating a slowly adapting characteristic. Upon forced deflation, the discharge frequency increased with increasing negative pressure to -158 mm H2O intratracheal pressure. The other type of receptor, termed irritant-like receptors, responded to both deflation and inflation. In addition, they displayed rapidly adapting and irregular discharges during maintained inflation. These results indicate that rat vagus nerves deliver afferent information from at least three types of pulmonary receptors: pulmonary stretch and lung irritant-like receptors and the receptors specifically sensitive to expiration or lung deflation. Furthermore, the possibility is postulated that vagal deflation-sensitive receptors are related to the peripheral mechanism in normal respiration and Hering-Breuer deflation reflex in rats.
为了阐明源自大鼠肺部的迷走神经传入纤维的特征,记录了肺牵张感受器和其他两种类型肺感受器的单单位活动。在后者中,有一种感受器,在本研究中称为对放气敏感的感受器,仅在正常呼吸的呼气阶段受到刺激。此外,这种类型的感受器表现出持续放电,分别在肺萎陷和用力呼气时产生一连串或一阵冲动。肺萎陷期间放电频率的下降缓慢,平均适应指数为20%,表明具有慢适应特性。在用力呼气时,放电频率随着气管内压力降至-158 mmHg的负压增加而增加。另一种感受器,称为类刺激感受器,对呼气和吸气均有反应。此外,它们在持续吸气期间表现出快速适应和不规则放电。这些结果表明,大鼠迷走神经传递来自至少三种类型肺感受器的传入信息:肺牵张感受器、类肺刺激感受器以及对呼气或肺萎陷特别敏感的感受器。此外,推测迷走神经对放气敏感的感受器与大鼠正常呼吸的外周机制和黑林-布雷尔呼气反射有关。