Key result
Experimental evaluations and a mathematical model suggest the existence of an extremal forced oscillation blood pressure control mechanism that optimizes hemodynamic energy expenditure.
Biomechanical characteristics of the vessel wall may define an optimum for hemodynamic operations, minimizing pulsatile energy expenditure at physiological mean pressure.
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No immediate clinical implications; leaves open human relevance of vessel-wall optimization in BP control.
Monos et al. (1995) studied this question. Mathematical model of extremal forced oscillation blood pressure control was evaluated on Hemodynamic energy expenditure and arterial pressure control. Experimental evaluations and a mathematical model suggest the existence of an extremal forced oscillation blood pressure control mechanism that optimizes hemodynamic energy expenditure.
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