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January 1, 1972Circulation Research207 citations

Slow Conduction and Reentry in the Ventricular Conducting System

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AWAndrew L. WitBHBrian F. HoffmanPCPaul F. Cranefield

Structured PICO

Does the application of high K+ and epinephrine induce slow conduction and reentrant excitation in excised canine Purkinje fibers?

P
Population
Short bundles of excised canine Purkinje fibers
I
Intervention
Application of high K+ and epinephrine to provoke depression of excitability and responsiveness
O
Outcome
Reentrant excitation and slow conduction characteristicssurrogate

Demonstrates that depression of excitability in Purkinje fibers leads to slow conduction and reentrant excitation, providing a mechanistic basis for ventricular arrhythmias.

Abstract

Depression of excitability and responsiveness provoked by the action of high K + and epinephrine on short bundles of excised canine Purkinje fibers yields reentrant excitation. An impulse entering a depressed area undergoes marked slowing of conduction; the impulse then may continue forward while also returning through the pathway by which the initiating impulse entered the depressed area. The impulse may be delayed or blocked in either the forward or the retrograde direction. The reentrant excitation can occur in the absence of premature excitation. Various methods of depression of excitability produce return extrasystoles in Purkinje fibers. The common factor is very slow conduction which depends upon the abolition of the fast upstroke and the appearance of a low-voltage, slowly propagated action potential that is readily blocked.

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Cite This Study

Wit et al. (1972) studied this question.

synapsesocial.com/papers/6a15922379ff98d0de4ed44chttps://doi.org/10.1161/01.res.30.1.1
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Slow Conduction and Reentry in the Ventricular Conducting System1972 · 225 citations
  2. 2An In Vitro Model of Paroxysmal Supraventricular Tachycardia1971 · 81 citations
  3. 3Interaction of Transmembrane Potentials in Canine Purkinje Fibers and at Purkinje Fiber-Muscle Junctions1969 · 179 citations
  4. 4Demonstration of a Dual A-V Nodal Conduction System in the Isolated Rabbit Heart1966 · 354 citations
  5. 5AN EXPERIMENTAL STUDY OF RECIPROCATING RHYTHM1941 · 70 citations