Journal of Applied Physiology
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J Appl Physiol 84: 868-876, 1998;
8750-7587/98 $5.00
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Vol. 84, Issue 3, 868-876, March 1998

Physiological control of a total artificial heart: conductance- and  arterial pressure-based control

Y. Abe1, T. Chinzei1, K. Mabuchi2, A. J. Snyder3, T. Isoyama2, K. Imanishi2, T. Yonezawa2, H. Matsuura2, A. Kouno1, T. Ono1, K. Atsumi1, I. Fujimasa2, and K. Imachi1

1 Institute of Medical Electronics, Faculty of Medicine, and 2 Research Center for Advance Science and Technology, University of Tokyo, Tokyo 113, Japan; and 3 Department of Surgery, College of Medicine, The Pennsylvania State University, Hershey, Pennsylvania 17033

To obtain a physiological response by a total artificial heart (TAH), while eliminating the hemodynamic abnormalities commonly observed with its use, we proposed the use of a conductance- and arterial pressure-based method (1/R control) to determine TAH cardiac output. In this study, we endeavored to make use of a variable more closely tied to central nervous system (CNS) efferents, systemic conductance, to provide the CNS with more direct control over the output of the TAH. The control equation that calculates the target cardiac output of the TAH was constructed on the basis of measurement of blood pressures and TAH flow. The 1/R control method was tested in TAH-recipient goats with an automatic method by using a microcomputer. In 1/R control animals, the typical TAH pathologies, such as mild arterial hypertension and substantial systemic venous hypertension, did not occur. Cardiac output varied according to daily activity level and exercise in a manner similar to that observed in natural heart goats. These results indicate that we have determined a control method for the TAH that avoids hemodynamic abnormalities exhibited by other TAH control systems and that exhibits physiological responses to exercise and daily activities under the conditions tested. The stability of the control and the complete lack of inappropriate excursions in cardiac output is suggestive of CNS involvement in stabilizing the system.

central nervous system; 1/R control method


JAP 84(3):868-876
0161-7567/98 $5.00 Copyright © 1998 the American Physiological Society



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