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神经肌肉阻滞对清醒人体呼吸力学的影响。

Effects of neuromuscular blockade on respiratory mechanics in conscious man.

作者信息

De Troyer A, Bastenier-Geens J

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1979 Dec;47(6):1162-8. doi: 10.1152/jappl.1979.47.6.1162.

Abstract

The effect of submaximal neuromuscular blockade (SMNB) on lung and chest wall mechanics was studied in six normal, awake subjects infused with pancuronium. Measurements of static lung volumes, specific airway conductance (sGaw), maximum expiratory and inspiratory flow-volume (MEFV, MIFV) curves, and static pressure-volume (PV) curves of the lung and of the relaxed chest wall were obtained after lung recoil pressure (Pst(L)) at full inflation had been reduced to 60 +/- 10% of control. Inspiratory capacity was decreased, but residual volume was not increased. Inspiratory PV curve of the lung was not modified, and the observed decrease in expiratory compliance and the slight increase in Pst(L) during deflation were compatible with the altered lung volume history. SMNB did not modify sGaw nor the relationship between Pst(L) and MEF; by contrast it markedly reduced MIF rates. Finally, SMNB transposed the chest wall PV curve to higher levels on the pressure axis (it decreased the outward pull of the chest wall) without greatly affecting its slope, and thereby it reduced the resting level of the respiratory system. We conclude that 1) muscle weakness per se does not affect the eleastic properties of the lungs and airways, and 2) involuntary respiratory muscle activity influences the elastic recoil of the chest wall. We believe this muscle activity originates from muscle spindles, and lies essentially in the inspiratory portion of the intercostal musculature.

摘要

在六名输注泮库溴铵的正常清醒受试者中,研究了次最大神经肌肉阻滞(SMNB)对肺和胸壁力学的影响。在肺完全充气时的肺回缩压(Pst(L))降至对照值的60±10%后,测量了静态肺容积、比气道传导率(sGaw)、最大呼气和吸气流量-容积(MEFV、MIFV)曲线以及肺和松弛胸壁的静态压力-容积(PV)曲线。吸气容量降低,但残气量未增加。肺的吸气PV曲线未改变,观察到的呼气顺应性降低以及放气过程中Pst(L)的轻微增加与肺容积历史的改变相符。SMNB未改变sGaw,也未改变Pst(L)与MEF之间的关系;相比之下,它显著降低了MIF速率。最后,SMNB将胸壁PV曲线在压力轴上移至更高水平(它降低了胸壁的向外拉力),而对其斜率影响不大,从而降低了呼吸系统的静息水平。我们得出结论:1)肌肉无力本身并不影响肺和气道的弹性特性;2)非自主呼吸肌活动会影响胸壁的弹性回缩。我们认为这种肌肉活动起源于肌梭,主要存在于肋间肌的吸气部分。

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