Dejours P
Respir Physiol. 1978 Apr;33(1):121-8. doi: 10.1016/0034-5687(78)90091-9.
Because water-breathers breathe much more water than air-breathers breathe air, and because in the two media the CO2 capacitance coefficients are similar, the difference in PCO2 between inspired and expired medium is much smaller in aquatic than in aerial animals, being generally inferior to 1 Torr. However, as regards CO2, water is a very complex medium, since the aquatic CO2 system varies with salinity, temperature, carbonation, photosynthesis and eventually ionic exchange in the gills. In no two waters is the pattern of CO2 exchange the same. In respiratory studies of aquatic animals it is very important to keep the carbon dioxide system of the water as constant as possible, or at least to be aware of its possible variation with many factors.
由于水生呼吸动物吸入的水比陆生呼吸动物吸入的空气多得多,并且由于在这两种介质中二氧化碳容量系数相似,所以水生动物吸入和呼出介质之间的PCO₂差异比陆生动物小得多,通常低于1托。然而,就二氧化碳而言,水是一种非常复杂的介质,因为水生二氧化碳系统会随着盐度、温度、碳酸化、光合作用以及最终鳃中的离子交换而变化。没有两种水的二氧化碳交换模式是相同的。在对水生动物的呼吸研究中,尽可能保持水的二氧化碳系统恒定,或者至少意识到其可能随多种因素而变化是非常重要的。