Key result
Moderate dynamic exercise significantly reduced heart rate-cardiac output translation in dogs (25.9% vs 52.3%; P<0.05), a coupling that was further decreased by heart failure.
Why the study?
Does dynamic exercise and muscle metaboreflex activation alter the spontaneous baroreflex control of cardiac output in normal and heart failure conditions in dogs?
Does dynamic exercise and muscle metaboreflex activation alter the spontaneous baroreflex control of cardiac output in normal and heart failure conditions in dogs?
Absolute Event Rate: 25.9% vs 52.3%
p-value: p=<0.05
Spontaneous baroreflex heart rate responses do not always translate to changes in cardiac output during exercise, and this coupling is further reduced by muscle metaboreflex activation and heart failure.
These canine data warrant caution when inferring cardiac output responses from heart rate in exercising HF patients; leaves open the need for human validation.
We have previously shown that spontaneous baroreflex-induced changes in heart rate (HR) do not always translate into changes in cardiac output (CO) at rest. We have also shown that heart failure (HF) decreases this linkage between changes in HR and CO. Whether dynamic exercise and muscle metaboreflex activation (via imposed reductions in hindlimb blood flow) further alter this translation in normal and HF conditions is unknown. We examined these questions using conscious, chronically instrumented dogs before and after pacing-induced HF during mild and moderate dynamic exercise with and without muscle metaboreflex activation. We measured left ventricular systolic pressure (LVSP), CO, and HR and analyzed the spontaneous HR-LVSP and CO-LVSP relationships. In normal animals, mild exercise significantly decreased HR-LVSP (-3.08 +/- 0.5 vs. -5.14 +/- 0.6 beats.min(-1).mmHg(-1); P < 0.05) and CO-LVSP (-134.74 +/- 24.5 vs. -208.6 +/- 22.2 ml.min(-1).mmHg(-1); P < 0.05). Moderate exercise further decreased both and, in addition, significantly reduced HR-CO translation (25.9 +/- 2.8% vs. 52.3 +/- 4.2%; P < 0.05). Muscle metaboreflex activation at both workloads decreased HR-LVSP, whereas it had no significant effect on CO-LVSP and the HR-CO translation. HF significantly decreased HR-LVSP, CO-LVSP, and the HR-CO translation in all situations. We conclude that spontaneous baroreflex HR responses do not always cause changes in CO during exercise. Moreover, muscle metaboreflex activation during mild and moderate dynamic exercise reduces this coupling. In addition, in HF the HR-CO translation also significantly decreases during both workloads and decreases even further with muscle metaboreflex activation.
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Ichinose et al. (2008) studied Heart failure. Dynamic exercise and muscle metaboreflex activation vs. Rest / Normal conditions was evaluated on HR-CO translation during moderate exercise (p=<0.05). Moderate dynamic exercise significantly reduced heart rate-cardiac output translation in dogs (25.9% vs 52.3%; P<0.05), a coupling that was further decreased by heart failure.
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