SIMPLE METHOD TO MEASURE TOTAL EXPIRATORY TIME CONSTANT BASED ON THE PASSIVE EXPIRATORY FLOW-VOLUME CURVE

被引:51
作者
BRUNNER, JX
LAUBSCHER, TP
BANNER, MJ
IOTTI, G
BRASCHI, A
机构
[1] UNIV FLORIDA,COLL MED,DEPT ANESTHESIOL,GAINESVILLE,FL
[2] POLICLIN SAN MATTEO,SERV ANESTESIA & RIANIMAZ SETTORE 1,I-27100 PAVIA,ITALY
关键词
LUNG COMPLIANCE; RESPIRATORY MECHANICS; CRITICAL CARE; PEAK EXPIRATORY FLOW RATE; MECHANICAL VENTILATION; LUNG; INTUBATION; ENDOTRACHEAL;
D O I
10.1097/00003246-199506000-00019
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Objective: In intubated, mechanically ventilated patients, inspiration is forced by externally applied positive pressure, In contrast, exhalation is passive and depends on the time constant of the total respiratory system, The expiratory time constant is thus an important determinant of mechanical ventilation, The aim of this study was to evaluate a simple method for measuring the expiratory time constant in ventilated subjects. Design: Prospective study using a lung simulator and ten dogs. Setting: University hospital. Subjects: Commercially available lung simulator and ten greyhound dogs. Interventions: Different expiratory time constants were set on the lung simulator, In the dogs, the endotracheal tube was clamped to increase airways resistance by 22.5 cm H2O/(L/sec) and the lungs were injured with hydrochloric acid to decrease total respiratory compliance by 16 mL/cm H2O. This procedure resulted in a wide range of expiratory time constants. Measurements and Main Results: Pneumotachography was used to measure flow and volume, The ratio of exhaled volume and peak flow was calculated from these signals, corrected for the limited exhalation time yielding the ''calculated expiratory time constant'' and compared with the actual expiratory time constant, The typical error was +/- 0.19 sec for the lung simulator and +/- 0.15 sec for the dogs. Conclusions: The volume and peak flow corrected for limited exhalation time is a good estimate of the total expiratory time constant in passive subjects and may be useful for the titration of mechanical ventilation.
引用
收藏
页码:1117 / 1122
页数:6
相关论文
共 13 条
[1]   VOLUME-TIME PROFILE DURING RELAXED EXPIRATION IN THE NORMAL DOG [J].
BATES, JHT ;
DECRAMER, M ;
CHARTRAND, D ;
ZIN, WA ;
BODDENER, A ;
MILICEMILI, J .
JOURNAL OF APPLIED PHYSIOLOGY, 1985, 59 (03) :732-737
[2]   A SIMPLE METHOD FOR ESTIMATING COMPLIANCE [J].
BRUNNER, JX ;
LANGENSTEIN, H ;
WOLFF, G .
CRITICAL CARE MEDICINE, 1985, 13 (08) :675-678
[3]  
BRUNNER JX, 1988, PULMONARY FUNCTION I, P18
[4]  
EAST T D, 1990, American Review of Respiratory Disease, V141, pA240
[5]   MANEUVER-FREE DETERMINATION OF COMPLIANCE AND RESISTANCE IN VENTILATED ARDS PATIENTS [J].
GUTTMANN, J ;
EBERHARD, L ;
WOLFF, G ;
BERTSCHMANN, W ;
ZERAVIK, J ;
ADOLPH, M .
CHEST, 1992, 102 (04) :1235-1242
[6]  
IOTTI G, 1992, REAN URG, V1, P129
[7]  
LANDAU LI, 1975, AM REV RESPIR DIS, V111, P725
[8]   DETERMINANTS AND LIMITS OF PRESSURE-PRESET VENTILATION - A MATHEMATICAL-MODEL OF PRESSURE CONTROL [J].
MARINI, JJ ;
CROOKE, PS ;
TRUWIT, JD .
JOURNAL OF APPLIED PHYSIOLOGY, 1989, 67 (03) :1081-1092
[9]   A NEW METHOD FOR MEASUREMENT OF COMPLIANCE AND RESISTANCE OF LUNGS AND THORAX [J].
MCILROY, MB ;
NADEL, JA ;
TIERNEY, DF .
JOURNAL OF APPLIED PHYSIOLOGY, 1963, 18 (02) :424-&
[10]   SOME SUGGESTIONS FOR MEASURING PREDICTIVE PERFORMANCE [J].
SHEINER, LB ;
BEAL, SL .
JOURNAL OF PHARMACOKINETICS AND BIOPHARMACEUTICS, 1981, 9 (04) :503-512