Rollin F, Amory H, Desmecht D, Linden A, Art T, Lomba F, Lekeux P
Laboratory for Functional Investigation, Faculty of Veterinary Medicine, University of Liège, Sart Tilman, Belgium.
Zentralbl Veterinarmed A. 1997 Apr;44(2):79-90. doi: 10.1111/j.1439-0442.1997.tb01089.x.
The effects of an acute non-isocapnic hypoxia on ventilation and pulmonary mechanics were investigated in 6 healthy unsedated Holstein-Friesian (HF) calves and in 7 double-muscled calves of the Belgian White and Blue (BWB) breed known to develop more severe hypoxemia during exercise and respiratory diseases. Data were collected at 1 min intervals throughout the following protocol: breathing air (FIO2 = 21%), then breathing hypoxic gas mixture (FIO2 = 10%) for 5 min, and, finally, breathing air again for 5 min of recovery. Arterial blood was sampled at rest and at the 4th min of hypoxia for blood gas analysis. In HF and BWB calves, hypoxia induced a significant increase in tidal and minute volume, but did not change respiratory rate, dynamic lung compliance and total pulmonary resistance. However, with regard to their ventilation during normoxia at rest, BWB calves showed a comparatively greater rise in ventilation than HF calves during the first 4 min of hypoxia. On the contrary, by the 5th minute of hypoxia, ventilation of BWB calves declined to the normoxic level while HF calves largely sustained hyperventilation. This hypoxic ventilatory depression in BWB calves could be explained by the proportionately greater initial increase in ventilation. It was concluded that BWB calves supported this hypoxic challenge less easily than HF calves.
在6头未使用镇静剂的健康荷斯坦 - 弗里生(HF)犊牛和7头比利时蓝白(BWB)双肌品种犊牛中,研究了急性非等碳酸血症性缺氧对通气和肺力学的影响。已知BWB品种犊牛在运动和呼吸系统疾病期间会出现更严重的低氧血症。在以下实验方案中,每隔1分钟收集一次数据:先呼吸空气(FIO2 = 21%),然后呼吸低氧混合气体(FIO2 = 10%)5分钟,最后再次呼吸空气5分钟进行恢复。在静息状态和缺氧第4分钟时采集动脉血样进行血气分析。在HF和BWB犊牛中,缺氧导致潮气量和分钟通气量显著增加,但呼吸频率、动态肺顺应性和总肺阻力未发生变化。然而,就静息常氧状态下的通气情况而言,在缺氧的前4分钟内,BWB犊牛的通气量上升幅度比HF犊牛相对更大。相反,到缺氧第5分钟时,BWB犊牛的通气量降至常氧水平,而HF犊牛在很大程度上维持了过度通气。BWB犊牛的这种低氧通气抑制现象可以用通气量最初更大比例的增加来解释。得出的结论是,BWB犊牛比HF犊牛更难应对这种低氧挑战。