Kaminski R P, Forster H V, Bisgard G E, Pan L G, Dorsey S M, Barber B J
J Appl Physiol (1985). 1985 May;58(5):1592-6. doi: 10.1152/jappl.1985.58.5.1592.
The purpose of this study was to determine if the changes in O2 consumption (VO2) during CO2 inhalation could in part be due to stimulation of thermogenesis for homeothermy. Twelve ponies were exposed for 30-min periods to inspired CO2 (PIco2) levels of less than 0.7, 14, 28, and 42 Torr during the winter at 5 (neutral) and 23 degrees C ambient temperatures (TA) and during the summer at 21 (neutral TA), 30, and 12 degrees C. Elevating TA in both seasons resulted in an increased pulmonary ventilation (VE) and breathing frequency (f) (P less than 0.01) but no significant increase in VO2 (P greater than 0.05). Decreasing TA in the summer resulted in a decrease in VE and f (P less than 0.01) but no significant change in VO2 (P greater than 0.05). At neutral TA in both seasons, VO2 increased progressively (P less than 0.05) as PIco2 was increased from 14 to 28 and 42 Torr. The increases in VO2 during CO2 inhalation were attenuated (P less than 0.05) at elevated TA and accentuated at the relatively cold TA in the summer (P less than 0.05). Respiratory heat loss (RHL) during CO2 inhalation was inversely related to TA. Above a threshold RHL of 2 cal X min-1 X m-2, metabolic heat production (MHP) increased 0.3 cal X min-1 X m-2 for each unit increase in RHL during CO2 inhalation at the neutral and elevated TA. However, during cold stress in the summer, the slope of the MHP-RHL relationship was 1.6, indicating an increased MHP response to RHL.(ABSTRACT TRUNCATED AT 250 WORDS)
本研究的目的是确定吸入二氧化碳期间氧耗量(VO2)的变化是否部分归因于对体温调节产热的刺激。在冬季的5(中性)和23摄氏度环境温度(TA)下以及夏季的21(中性TA)、30和12摄氏度下,12匹小马分别暴露于吸入二氧化碳(PIco2)水平低于0.7、14、28和42托的环境中30分钟。在两个季节中,环境温度升高均导致肺通气量(VE)和呼吸频率(f)增加(P<0.01),但VO2无显著增加(P>0.05)。夏季环境温度降低导致VE和f降低(P<0.01),但VO2无显著变化(P>0.05)。在两个季节的中性TA下,随着PIco2从14增加到28和42托,VO2逐渐增加(P<0.05)。吸入二氧化碳期间VO2的增加在环境温度升高时减弱(P<0.05),而在夏季相对寒冷的环境温度下增强(P<0.05)。吸入二氧化碳期间的呼吸热损失(RHL)与环境温度呈负相关。在中性和升高的环境温度下,当RHL超过2卡·分钟-1·米-2的阈值时,吸入二氧化碳期间RHL每增加一个单位,代谢产热(MHP)增加0.3卡·分钟-1·米-2。然而,在夏季冷应激期间,MHP-RHL关系的斜率为1.6,表明MHP对RHL的反应增强。(摘要截断于250字)