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Identification of vagal sensory receptors in the rat lung: are there subtypes of slowly adapting receptors?

机译:鉴定大鼠肺中的迷走神经感觉受体:是否存在亚型的慢适应受体?

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摘要

1. We studied the characteristics of pulmonary sensory receptors whose afferent fibres are in the left vagus nerve of opened-chest rats. The activity of these receptors was recorded during mechanical ventilation approximating eupnoea, as well as during deflation, stepwise inflations and constant-pressure inflations of the lungs. Data were also collected from closed-chest rats and analysed separately. 2. Ninety-four per cent of receptors were located in the ipsilateral lung or airways with the remainder in the contralateral lung. 3. Not only were slowly adapting receptors (SARs) the most abundant pulmonary receptors but 21% of them were either exclusively or predominantly active during the deflationary phase of the ventilatory cycle. Deflationary units were found in opened- and closed-chest rats. The average conduction velocity for all fibres innervating SARs averaged 29.7 m s-1. 4. We found rapidly adapting receptors (RARs) to be extremely rare in the rat. Their activity was sparse and irregular. The conduction velocities of fibres innervating RARs averaged 12.3 m s-1. 5. Far more abundant than RARs in the remaining population of pulmonary fibres were C fibres. They were observed to have an average conduction velocity of 2.1 m s-1, base-level activity which was irregular and a high pressure threshold of activation and were stimulated by intravenous capsaicin injection. 6. Notable differences exist between pulmonary receptors in rats and those reported in other species. The variations include the abundant existence of intrapulmonary SARs with exclusively deflationary modulation and the rarity of RARs. We also encountered C fibres which have not previously been described systematically in the rat.
机译:1.我们研究了传入纤维位于开胸大鼠的左迷走神经中的肺感觉受体的特征。在接近通气的机械通气期间,以及在放气,逐步充气和肺恒压充气期间,记录了这些受体的活性。还从闭胸大鼠收集数据并分别进行分析。 2. 94%的受体位于同侧肺或气道,其余受体位于对侧肺。 3.不仅慢适应性受体(SARs)是最丰富的肺部受体,而且在通气周期的放气阶段,它们中的21%要么是独占的,要么是主要活跃的。在开胸和闭胸大鼠中发现了放气单位。所有支配SAR的光纤的平均传导速度平均为29.7 m s-1。 4.我们发现快速适应性受体(RAR)在大鼠中极为罕见。他们的活动稀疏无序。支配RAR的纤维的传导速度平均为12.3 m s-1。 5.在其余的肺纤维中,C纤维比RAR丰富得多。观察到它们的平均传导速度为2.1 m s-1,基本水平的活性是不规则的,并且活化的高压阈值较高,并通过静脉注射辣椒素进行刺激。 6.大鼠的肺受体与其他物种的肺受体之间存在显着差异。这些变化包括肺内SAR的大量存在,而肺内SAR仅具有放气调制,并且RAR很少。我们还遇到了以前在大鼠中尚未系统描述的C纤维。

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