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March 1, 2001Experimental Physiology52 citationsOpen Access

Pacemaker Shift in the Rabbit Sinoatrial Node in Response to Vagal Nerve Stimulation

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NSNitaro ShibataSIShin InadaKMKazuyuki Mitsui

Key Result

Brief vagal nerve stimulation in the rabbit sinoatrial node caused a complex beat-to-beat shift of the leading pacemaker site by 1-6 mm, correlating initially with the extent of rate slowing.

Structured PICO

Does vagal nerve stimulation alter the activation sequence and pacemaker site in the rabbit sinoatrial node?

P
Population
Rabbit sinoatrial (SA) node
I
Intervention
Brief postganglionic vagal nerve stimulation
C
Comparator
Baseline/spontaneous excitation
O
Outcome
Activation sequence and pacemaker shift in the SA nodesurrogate

Vagal nerve stimulation induces complex beat-to-beat shifts in the leading pacemaker site of the rabbit sinoatrial node, likely reflecting functional and morphological heterogeneity.

Abstract

Effects of brief postganglionic vagal nerve stimulation on the activation sequence of the rabbit sinoatrial (SA) node were investigated. Activation sequences in a small area (7 mm x 7 mm) on the epicardial surface were measured in a beat-to-beat manner using an extracellular potential mapping system composed of 64 modified bipolar electrodes with high-gain and low-frequency band-pass filtering. The leading pacemaker site was recognised clearly from both the activation sequence and the characteristic morphology of the potentials. Vagal stimulation resulted in a short-lasting initial slowing of spontaneous rate followed by a long-lasting secondary slowing; a brief period of relative or absolute acceleration was interposed between the two slowing phases. During these changes of spontaneous rate, the leading pacemaker site shifted in a complex beat-to-beat manner by 1-6 mm alongside the crista terminalis in the superior or inferior direction. For the first spontaneous excitation following stimulation, the greater the slowing, the larger the distance of the pacemaker shift. There was no such linear relationship between the extent of slowing and the distance of pacemaker shift for the subsequent beats. These changes in the leading pacemaker site in response to vagal stimulation may be the result of the functional and morphological heterogeneity of the mammalian SA node in terms of innervation, receptor distribution and ion channel densities. Experimental Physiology (2001) 86.2, 177-184.

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Cite This Study

Shibata et al. (2001) studied Rabbit sinoatrial node physiology. Vagal nerve stimulation was evaluated on Activation sequence and pacemaker shift. Brief vagal nerve stimulation in the rabbit sinoatrial node caused a complex beat-to-beat shift of the leading pacemaker site by 1-6 mm, correlating initially with the extent of rate slowing.

synapsesocial.com/papers/6a163fd810348063628e9b7bhttps://doi.org/10.1113/eph8602100
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