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Carotid body chemoreceptor activity in the new-born lamb

机译:新生羔羊的颈动脉化学感受器活性

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摘要

1. Tidal volume, carotid artery oxygen tension (Pa,O2) and blood pressure and chemoreceptor activity in the sinus nerve have been continuously measured and recorded in nine lambs anaesthetized with pentobarbitone sodium, and varying in age from some minutes after birth to 5 days after birth.2. Inhalation of 100% oxygen caused, after a delay of 3-4 sec, a rise in Pa,O2, a fall in minute ventilation (V̇) and chemoreceptor activity. The respiratory response was abolished after section of both sinus nerves.3. Inhalation of 10% oxygen in nitrogen caused a fall in carotid Pa,O2, a rise in respiration and in chemoreceptor activity. The respiratory response was abolished after both sinus nerves had been cut.4. Minute ventilation, carotid Pa,O2 and chemoreceptor activity increased on breathing 5% CO2 in air. Section of both sinus nerves did not affect the maximum increase in ventilation but the lag of the respiratory response approximately doubled while respiration increased more slowly.5. From these results, it was calculated that the chemoreceptors had a latency of 0·25-0·5 sec and the time constant of the rate of change of chemoreceptor activity was 10-15 sec.6. The chemoreceptors responded to changes in Pa,O2 of ±5-10 mm Hg.7. Comparison of these results with those reported in adult animals suggest that the peripheral chemoreceptors are fully mature at birth, that their response does not differ with the age of the lamb and that the carotid body chemoreceptors are concerned both in the mediation of the hypoxic drive to ventilation and in the respiratory response to inhaled CO2.
机译:1.连续测量并记录在九只接受戊巴比妥钠麻醉的羔羊中的潮气量,颈动脉血氧饱和度(Pa,O2)以及窦内神经的血压和化学感受器活性,年龄从出生后几分钟到出生5天不等出生后2。延迟3-4秒后,吸入100%的氧气会导致Pa,O2升高,分钟通气量(V̇)下降和化学感受器活性。两条窦神经切开后呼吸反应消失。3。吸入氮中的10%氧气会导致颈动脉Pa,O2下降,呼吸作用和化学感受器活性增加。切断鼻窦神经后,呼吸系统反应消失。4。在空气中呼吸5%CO2时,分钟通气,颈动脉Pa,O2和化学感受器活性增加。两条窦神经的截面均未影响通气量的最大增加,但呼吸反应的滞后时间大约增加了一倍,而呼吸作用则更为缓慢。5。从这些结果可以计算出化学感受器的潜伏期为0·25-0·5 sec,化学感受器活性变化率的时间常数为10-15 sec.6。化学感受器对±5-10 mm Hg.7的Pa,O2的变化有反应。将这些结果与成年动物中报告的结果进行比较表明,外周化学感受器在出生时就已经完全成熟,它们的反应随羔羊的年龄而变化,并且颈动脉体化学感受器都与低氧驱动力有关。通风和呼吸对吸入CO2的反应。

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