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January 1, 1959Circulation Research161 citations

Electrical Activity of Single Fibers of the Atrioventricular Node

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BHBrian F. HoffmanACAntonio Paes de CarvalhoWMWalmor C. De Mello

Key Result

Intracellular microelectrode recordings in isolated rabbit hearts demonstrated that appreciable delay in excitation transmission occurs only in the atrial portion of the A-V node.

Key Points

  • Investigate the cellular mechanisms underlying atrioventricular conduction delay across distinct regions of the cardiac conduction system.
  • Conducted electrophysiological recordings in isolated rabbit heart preparations.
  • Used multiple intracellular microelectrodes to capture simultaneous electrical recordings from single fibers across the atrium, atrioventricular node, and His bundle.
  • Conduction delay occurred selectively in the atrial portion of the atrioventricular node.
  • Fibers in the atrial portion of the node displayed low resting potential, slow diastolic depolarization, slow upstroke velocity, reduced amplitude, and frequent notches during the rising phase.
  • His bundle action potentials resembled peripheral Purkinje fibers, with intermediate nodal regions displaying a gradual transition in action potential morphology.

Structured PICO

P
Population
Isolated rabbit hearts
I
Intervention
Multiple intracellular microelectrodes to obtain simultaneous records from single fibers of atrium, A-V node and His bundle
O
Outcome
Action potential characteristics and transmission delay across the A-V nodesurrogate

This foundational preclinical study demonstrates that the mechanism of atrioventricular delay occurs primarily in the atrial portion of the A-V node due to specific slow action potential characteristics.

Abstract

The mechanism of atrioventricular delay has been studied in isolated rabbit hearts. Multiple intracellular microelectrodes have been employed to obtain simultaneous records from single fibers of atrium, A-V node and His bundle. An appreciable delay in the transmission of excitation has been found only in the atrial portion of the A-V node. Action potentials recorded from single fibers in this area show a low resting potential, slow diastolic depolarization, slow upstroke and low amplitude. These action potentials frequently show one or more notches or steps on the rising phase. Action potentials recorded from fibers of the His bundle are similar in shape and amplitude to those of peripheral Purkinje fibers. Records obtained at several sites between the atrial portion of the node and the His bundle show a gradual transition in action potential shape. The mechanism of slow transmission across the A-V node is discussed in relation to the electrical activity of fibers at the atrial end of this structure.

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Cite This Study

Hoffman et al. (1959) studied Atrioventricular delay mechanism. Intracellular microelectrode recording was evaluated on Electrical activity and transmission delay across the A-V node. Intracellular microelectrode recordings in isolated rabbit hearts demonstrated that appreciable delay in excitation transmission occurs only in the atrial portion of the A-V node.

synapsesocial.com/papers/6a0ece45aa1655e5fb22d308https://doi.org/10.1161/01.res.7.1.11
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