MATHEMATICAL-MODEL OF BLOOD-FLOW IN A CORONARY CAPILLARY

被引:18
作者
FIBICH, G
LANIR, Y
LIRON, N
机构
[1] TECHNION ISRAEL INST TECHNOL, DEPT BIOMED ENGN, CARDIAC SYST RES CTR, IL-32000 HAIFA, ISRAEL
[2] TECHNION ISRAEL INST TECHNOL, DEPT BIOMED ENGN, DEPT MATH, IL-32000 HAIFA, ISRAEL
来源
AMERICAN JOURNAL OF PHYSIOLOGY | 1993年 / 265卷 / 05期
关键词
CORONARY CIRCULATION; CAPILLARY FLOW; DISTRIBUTIVE ANALYSIS;
D O I
10.1152/ajpheart.1993.265.5.H1829
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The coronary capillary flow is analyzed theoretically based on continuum mechanics. The capillary is a long, elastic, and permeable vessel loaded externally by tissue pressure, and it is subject to possible periodic length changes, together with adjacent myocytes. Capillary flow is driven by arteriolar-venular pressure difference. Ultrafiltration due to transmural hydrostatic and osmotic gradients is included, and consideration of mass conservation leads to a nonlinear flow equation. The results show that under physiological conditions ultrafiltration is of minor importance, and the analysis predicts regional differences in capillary flow. In regions with high tissue pressure (subendocardium), capillaries undergo significant periodic volume changes, giving rise to intramyocardial pumping. In those regions, capillary wall elasticity is of major importance. In regions with low tissue pressure (subepicardium), the possible periodic capillary length changes are predominant. The predicted flow patterns are in good qualitative agreement with measured epicardial phasic flow. In conclusion, the methodological advantage of a distributive analysis is demonstrated by its ability to elucidate and evaluate the role of flow determinants and their complex interactions.
引用
收藏
页码:H1829 / H1840
页数:12
相关论文
共 38 条
[1]   PHASIC BLOOD-FLOW VELOCITY PATTERN IN EPIMYOCARDIAL MICROVESSELS IN THE BEATING CANINE LEFT-VENTRICLE [J].
ASHIKAWA, K ;
KANATSUKA, H ;
SUZUKI, T ;
TAKISHIMA, T .
CIRCULATION RESEARCH, 1986, 59 (06) :704-711
[2]   SIMULTANEOUS MEASUREMENT OF CAPILLARY DISTENSIBILITY AND HYDRAULIC CONDUCTANCE [J].
BALDWIN, AL ;
GORE, RW .
MICROVASCULAR RESEARCH, 1989, 38 (01) :1-22
[3]   MICROVASCULATURE OF DOG LEFT-VENTRICULAR MYOCARDIUM [J].
BASSINGT.JB ;
YIPINTSO.T ;
HARVEY, RB .
MICROVASCULAR RESEARCH, 1974, 7 (02) :229-249
[4]  
BERNE RM, 1979, HDB PHYSL 2, V1, P873
[5]   TIME-DEPENDENT CORONARY BLOOD-FLOW DISTRIBUTION IN LEFT-VENTRICULAR WALL [J].
BEYAR, R ;
SIDEMAN, S .
AMERICAN JOURNAL OF PHYSIOLOGY, 1987, 252 (02) :H417-H433
[6]  
BORG TK, 1981, FED PROC, V40, P2037
[7]  
BOSECK GL, 1983, THESIS U CALIFORNIA
[8]  
CAULFIELD JB, 1979, LAB INVEST, V40, P364
[9]   SLOW VISCOUS-FLOW INSIDE A TORUS - THE RESISTANCE OF SMALL TORTUOUS BLOOD-VESSELS [J].
CHADWICK, RS .
QUARTERLY OF APPLIED MATHEMATICS, 1985, 43 (03) :317-323
[10]   PHASIC REGIONAL MYOCARDIAL INFLOW AND OUTFLOW - COMPARISON OF THEORY AND EXPERIMENTS [J].
CHADWICK, RS ;
TEDGUI, A ;
MICHEL, JB ;
OHAYON, J ;
LEVY, BI .
AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 258 (06) :H1687-H1698