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温度对密西西比鳄通气中枢化学控制的影响

Effect of temperature on central chemical control of ventilation in the alligator Alligator mississippiensis.

作者信息

Branco L G, Wood S C

机构信息

Oxygen Transport Program, Lovelace Medical Foundation, Albuquerque, NM 87108.

出版信息

J Exp Biol. 1993 Jun;179:261-72. doi: 10.1242/jeb.179.1.261.

Abstract

Central chemoreceptor function was assessed in unanesthetized alligators, Alligator mississippiensis, at body temperatures of 15, 25 and 35 degrees C. Two experiments were performed. In the first experiment, the fourth ventricle was perfused with mock cerebrospinal fluid (CSF) solutions of different pH values (7.1-7.9). Changes in pulmonary ventilation were evaluated with a pneumotachograph and arterial pH (pHa) was measured. Perfusion with low-pH solutions increased ventilation and arterial pH. Perfusion with high-pH solutions decreased ventilation and arterial pH. Mock CSF pH had a greater effect at higher temperatures. In the second experiment, the relative contributions of central and peripheral chemoreceptor drive to breathing were evaluated using hypercapnic gas mixtures to stimulate both central and peripheral chemoreceptors. Hypercapnia caused an increase in ventilation which was larger at higher temperatures. To stimulate only the peripheral chemoreceptors, the same hypercapnic gas mixtures were applied while the CSF pH of the fourth ventricle was kept constant by perfusion with a mock CSF solution. This reduced significantly the ventilatory response induced by hypercapnia. These data indicate that, regardless of the temperature, central chemoreceptors play a major role in the ventilatory regulation of the alligator. The change in pHa with temperature is compatible with the alphastat hypothesis.

摘要

在体温为15、25和35摄氏度的未麻醉密西西比短吻鳄身上评估了中枢化学感受器功能。进行了两项实验。在第一个实验中,用不同pH值(7.1 - 7.9)的模拟脑脊液(CSF)溶液灌注第四脑室。用呼吸流速计评估肺通气的变化,并测量动脉pH值(pHa)。用低pH溶液灌注会增加通气和动脉pH值。用高pH溶液灌注会降低通气和动脉pH值。模拟脑脊液pH值在较高温度下影响更大。在第二个实验中,使用高碳酸血症气体混合物刺激中枢和外周化学感受器,评估中枢和外周化学感受器驱动对呼吸的相对贡献。高碳酸血症导致通气增加,在较高温度下增加幅度更大。为了仅刺激外周化学感受器,在通过灌注模拟脑脊液溶液使第四脑室的脑脊液pH值保持恒定的同时,应用相同的高碳酸血症气体混合物。这显著降低了高碳酸血症引起的通气反应。这些数据表明,无论温度如何,中枢化学感受器在短吻鳄的通气调节中起主要作用。动脉pH值随温度的变化与α稳态假说相符。

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