Fletcher R, Jonson B, Cumming G, Brew J
Br J Anaesth. 1981 Jan;53(1):77-88. doi: 10.1093/bja/53.1.77.
We present a review and a theoretical analysis of factors determining airway deadspace (VDaw) and alveolar deadspace (VDalv), the two constituents of physiological deadspace (VDphys). VDaw if the volume of gas between the lips and the alveolar/fresh gas interface, the location of which is determined by inspiratory flow pattern and airway geometry. VDalv can be caused by incomplete alveolar gas mixing and associated V/Q mismatching within the terminal respiratory units, temporal V/Q mismatching within units, spatial V/Q mismatching between units, and venous admixture. Most causes of VDphys are influenced by inspiratory flow pattern and the time available for gas diffusion and distribution. Analysis can be made from the single breath test for carbon dioxide (SBT--CO2) which is the plot of fraction of carbon dioxide in expired gas against expired volume. The common causes of VDalv are associated with a sloping SBT-CO2 phase III. Combination of SBT-CO2 with PaCO2 yields VDphys and VDalv. A sloping phase III with a negative arterial-end-tidal PCO2 gradient implies compensation by perfusion for early emptying, overventilated alveoli.
我们对决定气道死腔(VDaw)和肺泡死腔(VDalv)的因素进行了综述和理论分析,这两者是生理死腔(VDphys)的组成部分。VDaw是指嘴唇与肺泡/新鲜气体界面之间的气体容积,其位置由吸气气流模式和气道几何形状决定。VDalv可能由终末呼吸单位内肺泡气体混合不完全及相关的通气/血流(V/Q)不匹配、单位内的瞬时V/Q不匹配、单位间的空间V/Q不匹配以及静脉血掺杂引起。VDphys的大多数原因受吸气气流模式以及气体扩散和分布可用时间的影响。可通过二氧化碳单次呼吸试验(SBT--CO2)进行分析,该试验是呼出气体中二氧化碳分数相对于呼出容积的曲线图。VDalv的常见原因与SBT-CO2的III期斜率有关。SBT-CO2与动脉血二氧化碳分压(PaCO2)相结合可得出VDphys和VDalv。III期斜率为负且动脉-呼气末二氧化碳分压梯度为负意味着通过灌注对早期排空的过度通气肺泡进行代偿。