Key result
Vagal heart rate control in fish aligns with the ventilatory cycle, driving periodic relative bradycardia.
Extends cardiorespiratory coupling observations to fish; leaves open translation to human autonomic control.
The hypothesis that respiratory modulation of heart rate variability (HRV) or respiratory sinus arrhythmia (RSA) is restricted to mammals was tested on four Antarctic and four sub-Antarctic species of fish, that shared close genotypic or ecotypic similarities but, due to their different environmental temperatures, faced vastly different selection pressures related to oxygen supply. The intrinsic heart rate (fH) for all the fish species studied was approximately 25% greater than respiration rate (fV), but vagal activity successively delayed heart beats, producing a resting fH that was synchronized with fV in a progressive manner. Power spectral statistics showed that these episodes of relative bradycardia occurred in a cyclical manner every 2-4 heart beats in temperate species but at >4 heart beats in Antarctic species, indicating a more relaxed selection pressure for cardio-respiratory coupling. This evidence that vagally mediated control of fH operates around the ventilatory cycle in fish demonstrates that influences similar to those controlling RSA in mammals operate in non-mammalian vertebrates.
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Campbell et al. (2005) studied Respiratory sinus arrhythmia. Antarctic vs sub-Antarctic environment vs. Sub-Antarctic species was evaluated on Respiratory modulation of heart rate variability (HRV) or respiratory sinus arrhythmia (RSA). Vagally mediated control of heart rate operates around the ventilatory cycle in fish, with relative bradycardia occurring every 2-4 heart beats in temperate species and >4 in Antarctic species.
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