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新生大鼠平静呼吸和喘息的特征及比较。

Characterizations and comparisons of eupnoea and gasping in neonatal rats.

作者信息

Wang W, Fung M L, Darnall R A, St John W M

机构信息

Department of Physiology, Dartmouth Medical School, Lebanon, NH 03756, USA.

出版信息

J Physiol. 1996 Jan 1;490 ( Pt 1)(Pt 1):277-92. doi: 10.1113/jphysiol.1996.sp021143.

Abstract
  1. Our purpose was to characterize the ventilatory patterns of eupnoea and gasping in the neonatal rat. This study was precipitated by reports, using in vitro brainstem spinal cord preparations, that only a single pattern is present in neonatal rats. 2. In anaesthetized or decerebrate rat pups aged less than 13 days, eupnoea was characterized by a sudden onset of inspiratory activity and then a more gradual rise to peak levels. Following vagotomy, frequency fell and peak phrenic activity and tidal volume increased. The rate of rise of inspiratory activity also rose, but peak levels were still achieved during the latter half of inspiration. Vagal efferent activity exhibited bursts during both inspiration and the early expiration. This basic eupnoeic rhythm was not altered after sectioning of the carotid sinus nerves. 3. Upon exposure to hypoxia or anoxia, phrenic activity, tidal volume and frequency initially increased and then declined. In many animals, ventilatory activity then ceased, but later returned with a gasping pattern. 4. Gasping was characterized by a sudden onset of phrenic activity, which reached a peak intensity during the early portion of inspiration. The expiratory burst of vagal activity was eliminated. 5. Reductions of body temperature from 37 to 27 degrees C resulted in prolongations of inspiration and expiration and decreases of phrenic amplitude; phasic phrenic activity completely disappeared in some animals. Upon exposure to anoxia, gasping was observed, even in animals in which phrenic activity had disappeared in hyperoxia. 6. We conclude that, from the day of birth, rats can exhibit eupnoea and gasping patterns which are very similar to those of adult animals. 7. The rhythmic neural activities of the in vitro brainstem-spinal cord preparation, reported by others, differ markedly from eupnoea but are identical with gasping. We therefore conclude that this preparation is not suitable for investigation of the mechanisms that generate eupnoeic breathing.
摘要
  1. 我们的目的是描述新生大鼠平静呼吸和喘息的通气模式。本研究是由一些报告引发的,这些报告使用体外脑干脊髓标本,表明新生大鼠中只存在一种模式。2. 在小于13日龄的麻醉或去大脑大鼠幼崽中,平静呼吸的特征是吸气活动突然开始,然后逐渐上升至峰值水平。迷走神经切断后,频率下降,膈神经活动峰值和潮气量增加。吸气活动的上升速率也上升,但峰值水平仍在吸气后半期达到。迷走神经传出活动在吸气和呼气早期均表现为爆发。切断颈动脉窦神经后,这种基本的平静呼吸节律没有改变。3. 暴露于低氧或缺氧环境时,膈神经活动、潮气量和频率最初增加,然后下降。在许多动物中,通气活动随后停止,但后来又以喘息模式恢复。4. 喘息的特征是膈神经活动突然开始,在吸气早期达到峰值强度。迷走神经活动的呼气爆发消失。5. 体温从37℃降至27℃导致吸气和呼气延长,膈神经振幅减小;在一些动物中,膈神经的阶段性活动完全消失。暴露于缺氧环境时,即使在高氧环境中膈神经活动已消失的动物中也观察到喘息。6. 我们得出结论,从出生之日起,大鼠就可以表现出与成年动物非常相似的平静呼吸和喘息模式。7. 其他人报告的体外脑干 - 脊髓标本的节律性神经活动与平静呼吸明显不同,但与喘息相同。因此,我们得出结论,该标本不适用于研究产生平静呼吸的机制。

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