MEAN AIRWAY PRESSURE - PHYSIOLOGICAL DETERMINANTS AND CLINICAL IMPORTANCE .1. PHYSIOLOGICAL DETERMINANTS AND MEASUREMENTS

被引:96
作者
MARINI, JJ
RAVENSCRAFT, SA
机构
[1] Pulmonary/Critical Care Medicine, St. Paul-Ramsey Medical Center, St. Paul, MN 55101-2595
关键词
MECHANICAL VENTILATION; MONITORING; HEMODYNAMICS; BAROTRAUMA; WORK OF BREATHING; CRITICAL CARE; POSITIVE END-EXPIRATORY PRESSURE; TIDAL VOLUME; PULMONARY EMERGENCIES;
D O I
10.1097/00003246-199210000-00017
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Purposes: To discuss the theoretical relationship of mean alveolar pressure to its most easily measured analog, the mean airway pressure, and to describe the key determinants, measurement considerations, and clinical implications of this index. Data Sources: Relevant articles from the medical and physiologic literature, as well as mathematical arguments developed in this article from first principles. Study Selection: Theoretical, experimental, and clinical information that elucidates the physiologic importance, measurement, or adverse consequences of mean airway pressure. Data Extraction: Mathematical models were used in conjunction with data from the published literature to develop a unified description of the physiological and clinical relevance of mean airway pressure. Synthesis. Geometrical and mathematical analyses demonstrate that shared elements comprise mean airway pressure and mean alveolar pressure, two variables that are related by the formula: mean alveolar pressure = mean airway pressure + (VE/60) x (RE - RI), where VE, RE, and RI are minute ventilation and expiratory and inspiratory resistances, respectively. Clear guidelines can be developed for selecting the site of mean airway pressure determination, for specifying technical requirements for mean airway pressure measurement, and for delineating clinical options to adjust the level of mean airway pressure. Problems in viewing mean airway pressure as a reflection of mean alveolar pressure can be interpreted against the theoretical basis of their interrelationship. In certain settings, mean airway pressure closely relates to levels of ventilation, arterial oxygenation, cardiovascular function, and barotrauma. Because mean airway pressure is associated with both beneficial and adverse effects, a thorough understanding of its theoretical and practical basis is integral to formulating an effective pressure-targeted strategy of ventilatory support. Conclusions: Mean airway pressure closely reflects mean alveolar pressure, except when flow-resistive pressure losses differ greatly for the inspiratory and expiratory phases of the ventilatory cycle. Under conditions of passive inflation, mean airway pressure correlates with alveolar ventilation, arterial oxygenation, hemodynamic performance, and barotrauma. We encourage wider use of this index, appropriately measured and interpreted, as well as its incorporation into rational strategies for the ventilatory management of critical illness.
引用
收藏
页码:1461 / 1472
页数:12
相关论文
共 19 条
[1]   INADVERTENT POSITIVE END-EXPIRATORY PRESSURE DURING MECHANICAL VENTILATION [J].
BANCALARI, E .
JOURNAL OF PEDIATRICS, 1986, 108 (04) :567-569
[2]  
Benedict R. P., 1977, FUNDAMENTALS TEMPERA
[3]   INTRAPULMONARY GAS TRAPPING DURING MECHANICAL VENTILATION AT RAPID FREQUENCIES [J].
BERGMAN, NA .
ANESTHESIOLOGY, 1972, 37 (06) :626-&
[4]   AIRWAY PRESSURE MEASUREMENT DURING HIGH-FREQUENCY OSCILLATORY VENTILATION [J].
BOYNTON, BR ;
MANNINO, FL ;
MEATHE, EA ;
KOPOTIC, RJ ;
FRIEDERICHSEN, G .
CRITICAL CARE MEDICINE, 1984, 12 (01) :39-43
[6]   DIRECT BLOOD-PRESSURE MEASUREMENT - DYNAMIC-RESPONSE REQUIREMENTS [J].
GARDNER, RM .
ANESTHESIOLOGY, 1981, 54 (03) :227-236
[7]   INTERRUPTER TECHNIQUE FOR MEASUREMENT OF RESPIRATORY MECHANICS IN ANESTHETIZED CATS [J].
GOTTFRIED, SB ;
ROSSI, A ;
CALVERLEY, PMA ;
ZOCCHI, L ;
MILICEMILI, J .
JOURNAL OF APPLIED PHYSIOLOGY, 1984, 56 (03) :681-690
[8]  
Hansen A. T., 1949, ACTA PHYSIOL SCA S68, V19, P1
[9]  
KIMBALL WR, 1982, AM REV RESPIR DIS, V126, P991
[10]  
LACHMANN B, 1982, APPLIED PHYSL CLIN R, P141