A MODEL OF THE MECHANICS OF AIRWAY NARROWING

被引:163
作者
WIGGS, BR
MORENO, R
HOGG, JC
HILLIAM, C
PARE, PD
机构
[1] UBC Pulmonary Research Lab., St. Paul's Hospital, Vancouver, BC V6Z 1Y6
关键词
airway resistance; airway wall thickness; simulation; smooth muscle;
D O I
10.1152/jappl.1990.69.3.849
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
To examine the interaction between airway smooth muscle shortening and airway wall thickening on changes in pulmonary resistance, we have developed a model of the tracheobronchial tree that allows simulation of the mechanisms involved in airway narrowing. The model is based on the symmetrical dichotomous branching tracheobronchial tree as described by Weibel and uses fluid dynamic equations proposed by Pedley et al. to calculate inspiratory resistance during quiet tidal breathing. To allow for changes in lung volume, we used the airway pressure-area curves developed by Lambert et al. The model is easily implemented with a spreadsheet and personal computer that allows calculation of total and regional pulmonary resistance. At each airway generation in the model, provision is made for airway wall thickness, the maximal airway smooth muscle shortening achievable, and an S-shaped dose-response relationship to describe smooth muscle shortening. To test the validity of the model, we compared pressure-flow curves generated with the model with measurements of pulmonary resistance while normal subjects breathed air and 20% O2-80% He at a variety of lung volumes. By simulating progressive airway smooth muscle shortening, realistic pulmonary resistance vs. dose-response curves were produced. We conclude that this model provides realistic estimates of pulmonary resistance and shows potential for examining the various mechanisms that could produce excessive airway narrowing in disease.
引用
收藏
页码:849 / 860
页数:12
相关论文
共 28 条
[1]  
[Anonymous], 1965, ANESTHESIOLOGY
[2]   NEW METHOD FOR MEASURING AIRWAY RESISTANCE IN MAN USING A BODY PLETHYSMOGRAPH - VALUES IN NORMAL SUBJECTS AND IN PATIENTS WITH RESPIRATORY DISEASE [J].
DUBOIS, AB ;
BOTELHO, SY ;
COMROE, JH .
JOURNAL OF CLINICAL INVESTIGATION, 1956, 35 (03) :327-335
[3]   ALVEOLAR PRESSURE NONHOMOGENEITY DURING SMALL-AMPLITUDE HIGH-FREQUENCY OSCILLATION [J].
FREDBERG, JJ ;
KEEFE, DH ;
GLASS, GM ;
CASTILE, RG ;
FRANTZ, ID .
JOURNAL OF APPLIED PHYSIOLOGY, 1984, 57 (03) :788-800
[4]   SITE AND NATURE OF AIRWAY OBSTRUCTION IN CHRONIC OBSTRUCTIVE LUNG DISEASE [J].
HOGG, JC ;
MACKLEM, PT ;
THURLBEC.WM .
NEW ENGLAND JOURNAL OF MEDICINE, 1968, 278 (25) :1355-&
[5]   MODELS OF HUMAN BRONCHIAL TREE [J].
HORSFIEL.K ;
DART, G ;
OLSON, DE ;
FILLEY, GF ;
CUMMING, G .
JOURNAL OF APPLIED PHYSIOLOGY, 1971, 31 (02) :207-&
[6]   MORPHOLOGY OF BRONCHIAL TREE IN MAN [J].
HORSFIELD, K ;
CUMMING, G .
JOURNAL OF APPLIED PHYSIOLOGY, 1968, 24 (03) :373-+
[7]   PREDICTION OF MAXIMAL EXPIRATORY FLOW IN EXCISED HUMAN LUNGS [J].
HYATT, RE ;
WILSON, TA ;
BARYISHAY, E .
JOURNAL OF APPLIED PHYSIOLOGY, 1980, 48 (06) :991-998
[8]   AIRWAY-RESISTANCE - A FLUID MECHANICAL APPROACH [J].
JAFFRIN, MY ;
KESIC, P .
JOURNAL OF APPLIED PHYSIOLOGY, 1974, 36 (03) :354-361
[9]   THE MECHANICS OF AIRWAY NARROWING IN ASTHMA [J].
JAMES, AL ;
PARE, PD ;
HOGG, JC .
AMERICAN REVIEW OF RESPIRATORY DISEASE, 1989, 139 (01) :242-246
[10]   THE USE OF THE INTERNAL PERIMETER TO COMPARE AIRWAY SIZE AND TO CALCULATE SMOOTH-MUSCLE SHORTENING [J].
JAMES, AL ;
HOGG, JC ;
DUNN, LA ;
PARE, PD .
AMERICAN REVIEW OF RESPIRATORY DISEASE, 1988, 138 (01) :136-139