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February 15, 1995Circulation240 citations

Papillary Muscle Displacement Causes Systolic Anterior Motion of the Mitral Valve

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RLRobert A. LevineGVGus J. VlahakesXLXavier Lefebvre

Key Result

Anterior papillary muscle displacement caused systolic anterior motion of the mitral valve in all 7 dogs, with an outflow tract gradient of 33 +/- 19 mm Hg and mitral regurgitation in 6.

Key Points

  • To prospectively evaluate whether anterior displacement of the papillary muscles directly causes systolic anterior motion (SAM) of the mitral valve in vivo independently of septal hypertrophy.
  • Prospective in vivo animal study creating anterior papillary muscle displacement in N=7 dogs.
  • Evaluated mitral valve geometry and hemodynamics using echocardiography under controlled cardiac output and heart rate.
  • Papillary muscle displacement induced systolic anterior motion (SAM) in 7 of 7 dogs, generating a mean outflow tract gradient of 33 ± 19 mm Hg.
  • Mitral regurgitation developed in 6 of 7 dogs as the coaptation point shifted toward leaflet insertion, creating longer residual leaflets protruding into the outflow stream.

Structured PICO

Does anterior papillary muscle displacement cause systolic anterior motion of the mitral valve in an in vivo dog model?

P
Population
7 dogs studied by echocardiography, with controlled cardiac output and heart rate
I
Intervention
Anterior papillary muscle displacement
O
Outcome
Systolic anterior motion (SAM) of the mitral valvesurrogate

In an in vivo dog model, anterior papillary muscle displacement directly caused systolic anterior motion of the mitral valve and outflow tract gradients without septal hypertrophy.

Abstract

BACKGROUND: Systolic anterior motion (SAM) of the mitral valve in hypertrophic cardiomyopathy (HCM) has generally been explained by a Venturi effect related to septal hypertrophy, causing outflow tract narrowing and high velocities. Patients with HCM, however, also have primary abnormalities of the mitral apparatus, including anterior and inward or central displacement of the papillary muscles, and leaflet elongation. These findings have led to the hypothesis that changes in the mitral apparatus can be a primary cause of SAM by altering the forces acting on the mitral valve and its ability to move in response to them. Despite suggestive observations, however, it has never been prospectively demonstrated that such changes can actually cause SAM. METHODS AND RESULTS: To test this hypothesis in vivo, anterior papillary muscle displacement was created in 7 dogs studied by echocardiography, with controlled cardiac output and heart rate. In all 7 dogs, papillary muscle displacement caused SAM, with an outflow tract gradient (33 +/- 19 mm Hg) and mitral regurgitation in 6. As in patients with HCM, the mitral valve was displaced anteriorly and the coaptation point shifted toward the insertion of the leaflets, creating longer distal residual leaflets that moved anteriorly. CONCLUSIONS: Primary changes in the mitral apparatus can cause SAM without septal hypertrophy. In this model, SAM appears to be determined by the ability of the leaflets to move anteriorly (papillary muscle displacement causing slack and increased residual leaflet length) and their interposition into the outflow stream by anterior displacement, determining the direction of this motion. Geometric factors observed in HCM and in patients with SAM without HCM can therefore play a primary role in causing SAM.

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Cite This Study

Levine et al. (1995) studied Systolic anterior motion of the mitral valve (n=7). Anterior papillary muscle displacement was evaluated on Systolic anterior motion (SAM). Anterior papillary muscle displacement caused systolic anterior motion of the mitral valve in all 7 dogs, with an outflow tract gradient of 33 +/- 19 mm Hg and mitral regurgitation in 6.

synapsesocial.com/papers/6a104fd1d91177df95fc9e85https://doi.org/10.1161/01.cir.91.4.1189
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Also Consider

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

  1. 1Size and motion of the mitral valve annulus in man. I. A two-dimensional echocardiographic method and findings in normal subjects.1981 · 463 citations
  2. 2Fluid dynamics of aortic stenosis: subvalvular gradients without subvalvular obstruction.1982 · 46 citations
  3. 3A Three-Dimensional Computational Investigation of Intraventricular Fluid Dynamics: Examination Into the Initiation of Systolic Anterior Motion of the Mitral Valve Leaflets1995 · 31 citations
  4. 4Diversity of structural mitral valve alterations in hypertrophic cardiomyopathy.1992 · 368 citations
  5. 5Development and determinants of dynamic obstruction to left ventricular outflow in young patients with hypertrophic cardiomyopathy.1992 · 57 citations