The arterial Windkessel
Top Cited Papers
Open Access
- 10 June 2008
- journal article
- review article
- Published by Springer Nature in Medical & Biological Engineering & Computing
- Vol. 47 (2) , 131-141
- https://doi.org/10.1007/s11517-008-0359-2
Abstract
Frank’s Windkessel model described the hemodynamics of the arterial system in terms of resistance and compliance. It explained aortic pressure decay in diastole, but fell short in systole. Therefore characteristic impedance was introduced as a third element of the Windkessel model. Characteristic impedance links the lumped Windkessel to transmission phenomena (e.g., wave travel). Windkessels are used as hydraulic load for isolated hearts and in studies of the entire circulation. Furthermore, they are used to estimate total arterial compliance from pressure and flow; several of these methods are reviewed. Windkessels describe the general features of the input impedance, with physiologically interpretable parameters. Since it is a lumped model it is not suitable for the assessment of spatially distributed phenomena and aspects of wave travel, but it is a simple and fairly accurate approximation of ventricular afterload.Keywords
This publication has 76 references indexed in Scilit:
- An evaluation of cardiac output by five arterial pulse contour techniques during cardiac surgeryAnaesthesia, 2007
- Letter to the EditorHypertension, 2007
- Ambulatory Arterial Stiffness Index as a Predictor of Cardiovascular Mortality in the Dublin Outcome StudyHypertension, 2006
- Systemic venous circulation. Waves propagating on a windkessel: relation of arterial and venous windkessels to systemic vascular resistanceAmerican Journal of Physiology-Heart and Circulatory Physiology, 2006
- Computational modeling of physiological systemsPhysiological Genomics, 2005
- Conductance catheter-based assessment of arterial input impedance, arterial function, and ventricular-vascular interaction in miceAmerican Journal of Physiology-Heart and Circulatory Physiology, 2005
- Pulse PressureHypertension, 1997
- Simple model of circulatory system dynamics including heart valve mechanicsJournal of Biomedical Engineering, 1991
- Aortic input impedance in normal man: relationship to pressure wave forms.Circulation, 1980
- ARTERIAL COMPLIANCE IN HYPERTENSIONAustralian and New Zealand Journal of Medicine, 1976