Mover-Lev H, Sadé J, Ar A
Department of Bioengineering, Faculty of Engineering, Tel-Aviv University, Israel.
Ann Otol Rhinol Laryngol. 1998 Mar;107(3):194-8. doi: 10.1177/000348949810700302.
Gas exchange between blood in the middle ear (ME) mucosa and ambient ME gas may be limited by diffusion through tissue or blood perfusion. In order to study the limiting factors in ME gas exchange, a hole was drilled in the bulla of 14 anesthetized guinea pigs through which a mass spectrometer probe was inserted and sealed in place. The rate at which oxygen (O2), carbon dioxide (CO2), nitrogen, and argon concentrations changed toward their steady state values was recorded. From the exponential fitted curves, gas rate constants (Kg) were calculated. The ratio KCO2/KO2 was 4:1, which is lower than expected from a diffusion-limited process in an aqueous compartment. The different rate ratios of CO2 and O2 indicate a diffusion-limited process. However, the deviation of the KCO2/KO2 ratio from that expected in aqueous solutions may indicate the involvement of a lipid compartment in gas exchange or other physiological mechanisms such as local acidity.
中耳(ME)黏膜中的血液与中耳环境气体之间的气体交换可能受限于通过组织的扩散或血液灌注。为了研究中耳气体交换中的限制因素,在14只麻醉的豚鼠的鼓泡上钻一个孔,通过该孔插入一个质谱仪探头并密封到位。记录氧气(O2)、二氧化碳(CO2)、氮气和氩气浓度向其稳态值变化的速率。根据指数拟合曲线,计算气体速率常数(Kg)。KCO2/KO2的比值为4:1,低于在水相隔室中扩散受限过程的预期值。CO2和O2的不同速率比值表明是一个扩散受限过程。然而,KCO2/KO2比值与水溶液中预期值的偏差可能表明脂质隔室参与了气体交换或其他生理机制,如局部酸度。