MacIntyre N R, Leatherman N E
Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710.
Am Rev Respir Dis. 1989 Apr;139(4):968-73. doi: 10.1164/ajrccm/139.4.968.
Two indices of the total mechanical load on the ventilatory muscles, i.e., the work per minute (W.min-1) and the inflation pressure time index (PTI), have been developed to better assess muscle energy demands and fatigue potential. However, the relationship of these two indices to the various individual determinants of load and to muscle energy demands and fatigue potential are not well understood. To investigate these relationships in a theoretical fashion, we first constructed a computer model to quantitate the magnitude and relative effects of changes in the ventilation component of load, i.e., alveolar ventilation demands (VA) and dead space volume (VD), and changes in the respiratory system impedance component of load, i.e., compliance (Crs) and resistance (Raw), on W.min-1 and PTI over a wide, clinically relevant, range of ventilatory conditions. From this analysis, we demonstrated that: (1) high mechanical loads could be developed over a wide range of circumstances (i.e., W.min-1 ranged from 0.29 kg.m.min-1 to 30.55 kg.m.min-1 and PTI ranged from 1.22 to 28.8 cm H2O as ventilation increased from 7 to 39 L.min-1 and impedances worsened from normal to a combined restricted and obstructed pattern); (2) each load determinant (i.e., VA, VD, Crs, and Raw) contributed substantially to these two indices of total mechanical load; (3) although impedance changes had comparable effects on W.min-1 and PTI, ventilation changes, as would be expected, had a greater effect on W.min-1 than on PTI.(ABSTRACT TRUNCATED AT 250 WORDS)
为了更好地评估呼吸肌的总机械负荷需求和疲劳可能性,人们开发了两个指标,即每分钟功(W.min-1)和充气压力时间指数(PTI)。然而,这两个指标与负荷的各种个体决定因素以及肌肉能量需求和疲劳可能性之间的关系尚未得到充分理解。为了从理论上研究这些关系,我们首先构建了一个计算机模型,以量化负荷通气成分的变化,即肺泡通气需求(VA)和死腔容积(VD),以及负荷呼吸系统阻抗成分的变化,即顺应性(Crs)和阻力(Raw),在广泛的、临床相关的通气条件范围内对W.min-1和PTI的大小和相对影响。通过该分析,我们证明:(1)在广泛的情况下可产生高机械负荷(即随着通气量从7 L.min-1增加到39 L.min-1且阻抗从正常恶化为限制性和阻塞性合并模式,W.min-1范围为0.29 kg.m.min-1至30.55 kg.m.min-1,PTI范围为1.22至28.8 cm H2O);(2)每个负荷决定因素(即VA、VD、Crs和Raw)对这两个总机械负荷指标有很大贡献;(3)尽管阻抗变化对W.min-1和PTI有类似影响,但正如预期的那样,通气变化对W.min-1的影响比对PTI的影响更大。(摘要截断于250字)