DocumentCode :
385402
Title :
Effective arterial elastance (Ea) is a non-specific measure of the arterial load
Author :
Segers, P. ; Verdonck, P. ; Stergiopulos, N. ; Westerhof, N.
Author_Institution :
Hydraulics Lab., Ghent Univ., Belgium
Volume :
2
fYear :
2002
fDate :
2002
Firstpage :
1230
Abstract :
Effective arterial elastance (Ea), defined as the ratio of left ventricular (LV) end-systolic pressure and stroke volume, lumps the steady and pulsatile components of the arterial load in a concise way. Combined with Emax, the slope of the LV end-systolic pressure-volume relation, Ea/Emax has been used to assess heart-arterial coupling. A mathematical heart-arterial interaction model was used to study the effects of changes in peripheral resistance (R, 0.6-1.8 mmHg/(ml/s)) and total arterial compliance (C, 0.5-2.0 ml/mmHg) covering the human patho-physiological range. Ea, Ea/Emax, LV stroke work and hydraulic power were calculated for all conditions. Multiple linear regression analysis revealed a linear relation between Ea, R/T and 1C: Ea=-0.13+1.02 R/T+0.31/C (with T cycle length) indicating that R/T contributes about 3 times more to Ea than arterial stiffness (1/C). It is demonstrated that different patho-physiological combinations of R and C may lead to the same Ea and Ea/Emax, but can result in differences of 10% in stroke work and 50% in maximal power.
Keywords :
biomechanics; blood vessels; cardiovascular system; haemodynamics; physiological models; pulsatile flow; statistical analysis; LV stroke work; arterial load; arterial load nonspecific measure; arterial stiffness; effective arterial elastance; heart-arterial coupling; human patho-physiological range; hydraulic power; left ventricular end-systolic pressure; mathematical heart-arterial interaction model; maximal power; multiple linear regression analysis; peripheral resistance; pulsatile components; steady components; stroke volume; total arterial compliance; Blood pressure; Electrical resistance measurement; Fluid flow measurement; Heart rate; Load modeling; Power generation; Power measurement; Power system modeling; Pressure measurement; Time varying systems;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology, 2002. 24th Annual Conference and the Annual Fall Meeting of the Biomedical Engineering Society EMBS/BMES Conference, 2002. Proceedings of the Second Joint
ISSN :
1094-687X
Print_ISBN :
0-7803-7612-9
Type :
conf
DOI :
10.1109/IEMBS.2002.1106362
Filename :
1106362
Link To Document :
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