A METHOD FOR ANALYSIS OF PULMONARY ARTERIAL AND VENOUS OCCLUSION DATA

被引:10
作者
AUDI, SH
DAWSON, CA
LINEHAN, JH
机构
[1] ZABLOCKI VET AFFAIRS MED CTR,RES SERV 151,5000 W NATL AVE,MILWAUKEE,WI 53295
[2] MARQUETTE UNIV,DEPT QUANTUM ELECTR,MILWAUKEE,WI 53233
[3] MED COLL WISCONSIN,DEPT PHYSIOL,MILWAUKEE,WI 53226
关键词
VASCULAR RESISTANCE; VASCULAR COMPLIANCE; MATHEMATICAL MODEL; ISOLATED DOG LUNG;
D O I
10.1152/jappl.1992.73.3.1190
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Recently, we presented a compartmental model of the pulmonary vascular resistance (R) and compliance (C) distribution with the configuration C1R1C2R2C, (J. Appl. Physiol. 70:2126-2136, 1991). This model was used to interpret the pressure vs. time data obtained after the sudden occlusion of the arterial inflow (AO), venous outflow (VO), or both inflow and outflow (DO) from an isolated dog lung lobe. In the present study, we present a new approach to the data analysis in terms of this model that is relatively simple to carry out and more robust. The data used to estimate the R's and C's are the steady-state arterial [Pa(0)] and venous [Pv(0)] pressures, the flow rate (Q), the area (A2) encompassed by Pa(t) after AO and the equilibrium pressure (Pd) after DO, and the average slope (m) of the Pa(t) and Pv(t) curves after VO. The following formulas can then be used to calculate the 2 R's and 3 C's: [Pa(0) - Pv(0)]/Q = R1 + R2 = RT, R1C1 congruent-to A2/[Pa(0) - Pd], R1 congruent-to [Pa(0) - Pd]/Q, Q/m = C1 + C2 + C3 = CT, and C2 = CT - (RTC1/R2).
引用
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页码:1190 / 1195
页数:6
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