Title :
Real-time loading of the isolated heart with a wave transmission arterial model
Author :
Kirkpatrick, Robert D. ; Taheri, Hesameddin ; Campbell, K.B.
Author_Institution :
Washington State Univ., Pullman, WA, USA
Abstract :
A technique for studying the real-time effects of arterial wave reflections on the performance of the isolated left ventricle was investigated. Real-time arterial loading of an isolated ferret heart with an asymmetric T-tube wave transmission model was obtained with the use of a multiprocessor computer system and a volume control linear motor pump. The multiprocessor computer system was programmed to compute the instantaneous aortic flow from the instantaneous ventricular pressure. The time integral of the flow was used as a command to the linear motor pump to control the instantaneous ventricular volume. This loading system allows one to impose a wide variety of vascular impedances on the ventricle by changing the parameters of the asymmetric T-tube model
Keywords :
cardiology; haemodynamics; physiological models; arterial wave reflections; asymmetric T-tube wave transmission model; flow time integral; instantaneous aortic flow; instantaneous ventricular pressure; isolated ferret heart; isolated heart; multiprocessor computer system; ventricle vascular impedance; volume control linear motor pump; wave transmission arterial model; Anatomy; Biological system modeling; Blood flow; Concurrent computing; Coprocessors; Heart; Impedance; Pressure control; Real time systems; Reflection;
Conference_Titel :
Engineering in Medicine and Biology Society, 1989. Images of the Twenty-First Century., Proceedings of the Annual International Conference of the IEEE Engineering in
Conference_Location :
Seattle, WA
DOI :
10.1109/IEMBS.1989.95598