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June 1, 1982Circulation171 citations

Mechanism of abnormal interventricular septal motion during delayed left ventricular activation.

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WLWilliam C. LittleRRRussell C. ReevesJAJ Arciniegas

Key Result

Right ventricular pacing causing delayed left ventricular activation produces abrupt preejection posterior IVS motion due to passive displacement from an altered transseptal pressure gradient.

Key Points

  • To determine the physiological mechanisms causing abnormal echocardiographic interventricular septal (IVS) motion during delayed left ventricular activation.
  • Recorded simultaneous high-fidelity left and right ventricular pressures, electrograms, and IVS echocardiograms in open-chest canine models (N=9).
  • Assessed septal activation sequences and transseptal pressure dynamics across normal sinus rhythm, isolated ventricular pacing sites, and dual-site simultaneous pacing configurations.
  • Right ventricular pacing caused preejection right ventricular pressure to exceed left ventricular pressure, inducing an immediate, abrupt posterior IVS displacement.
  • Simultaneous pacing producing a normal transseptal preejection pressure gradient preserved normal septal motion despite right-to-left electrical activation.
  • Variable septal motion following the initial preejection displacement directly depended on the degree of mechanical contraction asynchrony between ventricles.

Structured PICO

P
Population
9 open-chest dogs
I
Intervention
Various pacing protocols including right ventricular pacing, left IVS pacing, and simultaneous pacing from different ventricular sites
C
Comparator
Sinus rhythm
O
Outcome
Interventricular septal (IVS) motion and transseptal pressure gradientsurrogate

Abnormal interventricular septal motion during delayed left ventricular activation is primarily driven by passive displacement due to altered transseptal pressure gradients.

Abstract

To evaluate the mechanism of the abnormal motion of the interventricular septum (IVS) seen echocardiographically in some patients with relatively delayed ventricular activation, we simultaneously recorded high-fidelity left and right ventricular pressures and electrograms and echocardiograms of the IVS in nine open-chest dogs. During sinus rhythm and during left IVS pacing, the IVS was activated from left to right, preejection left ventricular pressure exceeded right ventricular pressure, and IVS motion was normal. During right ventricular pacing from the outflow tract, apex, free wall or right IVS was activated from right to left, right ventricular pressure increased before left ventricular pressure and simultaneously there was an abrupt posterior IVS motion. Simultaneous pacing from the right IVS and left ventricular free wall activated the IVS from right to left and produced a normal transseptal preejection pressure gradient and normal IVS motion. Simultaneous pacing from the left IVS and right ventricular free wall activated the IVS from left to right, and produced abrupt preejection posterior IVS motion coincident with an altered transseptal pressure gradient. During right ventricular pacing, IVS motion after the abrupt preejection posterior movement was variable. Anterior motion was associated with a greater asynchrony of right and left ventricular contraction than was normal posterior motion. We conclude that abrupt preejection posterior IVS motion seen with delayed left ventricular activation from right ventricular pacing is due to passive IVS displacement from an altered transseptal pressure gradient, and subsequent IVS motion depends on the degree of asynchrony between right and left ventricular contraction.

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Cite This Study

Little et al. (1982) studied Abnormal interventricular septal motion (n=9). Right ventricular pacing vs. Sinus rhythm was evaluated on Interventricular septal motion and transseptal pressure gradient. Right ventricular pacing causing delayed left ventricular activation produces abrupt preejection posterior IVS motion due to passive displacement from an altered transseptal pressure gradient.

synapsesocial.com/papers/6a0ee5a453f874f2b222ea6bhttps://doi.org/10.1161/01.cir.65.7.1486
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Also Consider

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

  1. 1Effects of diastolic transseptal pressure gradient on ventricular septal position and motion.1983 · 192 citations
  2. 2Site of premature ventricular contractions demonstrated by echocardiography.1981 · 4 citations
  3. 3Abnormal Motion of the Interventricular Septum in Right Ventricular Volume Overload1973 · 117 citations
  4. 4Interventricular septal motion: biventricular angiographic assessment of its relative contribution to left and right ventricular contraction.1981 · 51 citations
  5. 5Diastolic bulging of the interventricular septum toward the left ventricle. An echocardiographic manifestation of negative interventricular pressure gradient between left and right ventricles during diastole.1980 · 123 citations