Key result
Cholinergic and beta-adrenergic blockade with atropine and sotalol did not abolish heart rate hysteresis during heating and cooling in the lizard Pogona barbata.
Cholinergic and beta-adrenergic systems influence heart rate and heating/cooling rates in Pogona barbata but are not the sole mechanisms controlling heart rate hysteresis during thermoregulation.
Heart rate hysteresis persists after autonomic blockade in lizards; leaves open non-autonomic mechanisms with no immediate clinical translation.
During thermoregulation in the bearded dragon Pogona barbata, heart rate when heating is significantly faster than when cooling at any given body temperature (heart rate hysteresis), resulting in faster rates of heating than cooling. However, the mechanisms that control heart rate during heating and cooling are unknown. The aim of this study was to test the hypothesis that changes in cholinergic and adrenergic tone on the heart are responsible for the heart rate hysteresis during heating and cooling in P. barbata. Heating and cooling trials were conducted before and after the administration of atropine, a muscarinic antagonist, and sotalol, a beta-adrenergic antagonist. Cholinergic and beta-adrenergic blockade did not abolish the heart rate hysteresis, as the heart rate during heating was significantly faster than during cooling in all cases. Adrenergic tone was extremely high (92.3 %) at the commencement of heating, and decreased to 30.7 % at the end of the cooling period. Moreover, in four lizards there was an instantaneous drop in heart rate (up to 15 beats min(-1)) as the heat source was switched off, and this drop in heart rate coincided with either a drop in beta-adrenergic tone or an increase in cholinergic tone. Rates of heating were significantly faster during the cholinergic blockade, and least with a combined cholinergic and beta-adrenergic blockade. The results showed that cholinergic and beta-adrenergic systems are not the only control mechanisms acting on the heart during heating and cooling, but they do have a significant effect on heart rate and on rates of heating and cooling.
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Seebacher et al. (2001) studied Thermoregulation in lizards. Atropine and sotalol vs. Before administration was evaluated on Heart rate hysteresis during heating and cooling. Cholinergic and beta-adrenergic blockade with atropine and sotalol did not abolish heart rate hysteresis during heating and cooling in the lizard Pogona barbata.
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