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迷走神经肺感受器的放电在猫呼气的不同阶段差异性地改变神经活动。

Discharge of vagal pulmonary receptors differentially alters neural activities during various stages of expiration in the cat.

作者信息

St John W M, Zhou D

机构信息

Department of Physiology, Dartmouth Medical School, Hanover, NH 03756.

出版信息

J Physiol. 1990 May;424:1-12. doi: 10.1113/jphysiol.1990.sp018051.

Abstract
  1. The purpose was to evaluate the hypothesis that neural expiration is composed of two phases: I, a post inspiratory period; and II, the period at which expiratory activities of spinal nerves reach peak values. We hypothesized that the discharge of pulmonary stretch receptors might differentially alter neural activities during these two phases. 2. Activities of the phrenic nerve, intercostal nerve and nerves innervating the thyroarytenoid muscle of the larynx and triangularis sterni muscle of the chest wall were recorded in decerebrate and paralysed cats. 3. The experimental animals were ventilated with a servo-respirator which produced changes in tracheal pressure, and lung volume, in parallel with alterations in integrated activity of the phrenic nerve. 4. In order to assess the influence of the discharge of slowly adapting pulmonary stretch receptors upon neural activities during expiration, lung volume was held at end-expiratory or end-inspiratory levels for individual respiratory cycles. 5. When pulmonary inflation was prevented, phrenic activity increased, as did activity of the thyroarytenoid nerve during early expiration. In contrast, activities of the triangularis sterni and intercostal nerves during mid- to late expiration declined. 6. Holding the lungs at end-inspiratory levels caused a reduction of thyroarytenoid activity and increases in peak triangularis sterni and intercostal activities. Neural expiration typically continued as long as the lungs were maintained at the end-inspiratory level. 7. Responses were qualitatively similar in hypocapnia, normocapnia and hypercapnia, but the magnitude of changes in neural activities was typically augmented with elevations in end-tidal fractional concentrations of CO2. 8. We conclude that the discharge of slowly adapting pulmonary stretch receptors inhibits neural activities during early expiration and augments activities during mid-to late expiration. Hence, our data support the concept that neural expiration is composed of two stages in which neural activities may be differentially controlled.
摘要
  1. 目的是评估以下假说:神经呼气由两个阶段组成:阶段I,吸气后时期;阶段II,脊神经呼气活动达到峰值的时期。我们假设肺牵张感受器的放电可能在这两个阶段对神经活动产生不同影响。2. 在去大脑并麻痹的猫身上记录膈神经、肋间神经以及支配喉甲杓肌和胸壁胸骨三角肌的神经的活动。3. 实验动物通过伺服呼吸器进行通气,该呼吸器可使气管压力和肺容积发生变化,同时膈神经的综合活动也会改变。4. 为了评估缓慢适应型肺牵张感受器的放电对呼气过程中神经活动的影响,在各个呼吸周期中将肺容积维持在呼气末或吸气末水平。5. 当阻止肺充气时,膈神经活动增加,呼气早期甲杓肌神经的活动也增加。相反,胸骨三角肌和肋间神经在呼气中晚期的活动下降。6. 将肺维持在吸气末水平会导致甲杓肌活动减少,胸骨三角肌和肋间神经的峰值活动增加。只要肺维持在吸气末水平,神经呼气通常会持续。7. 在低碳酸血症、正常碳酸血症和高碳酸血症时,反应在性质上相似,但随着呼气末二氧化碳分数浓度升高,神经活动变化的幅度通常会增大。8. 我们得出结论,缓慢适应型肺牵张感受器的放电在呼气早期抑制神经活动,在呼气中晚期增强活动。因此,我们的数据支持神经呼气由两个阶段组成的概念,在这两个阶段中神经活动可能受到不同控制。

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J Exp Biol. 1982 Oct;100:93-107. doi: 10.1242/jeb.100.1.93.
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Reflex prolongation of stage I of expiration.呼气第一阶段的反射性延长。
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The differential organization of medullary post-inspiratory activities.
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