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June 19, 2026Journal of the American College of Cardiology313 citations

Mechanism of ischemic mitral regurgitation with segmental left ventricular dysfunction: three-dimensional echocardiographic studies in models of acute and chronic progressive regurgitation

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YOYutaka OtsujiMHMark D. HandschumacherNLNoah Liel‐Cohen

Key Result

Changes in the 3D geometry of the mitral apparatus, specifically increased tethering distance, strongly predicted mitral regurgitation volume in acute (r2=0.75) and chronic (r2=0.86) animal models.

Key Points

  • This research seeks to differentiate between causes of segmental ischemic mitral regurgitation, focusing on left ventricular dysfunction and geometric distortion.
  • Utilized models in seven dogs and seven sheep with left circumflex coronary ligation to analyze acute and chronic left ventricular dysfunction.
  • Restricted left ventricular expansion initially, followed by observation of subsequent dilation and remodeling over eight weeks.
  • Employed three-dimensional echocardiography to quantify mitral geometry and regurgitation volume.
  • In the acute model, MR remained trace initially but increased to moderate with significant LV dilation (ejection fraction = 23 +/- 8%).
  • Chronic model showed MR increased from trace to moderate over eight weeks with LV dilation and shape changes.
  • The primary predictor of MR volume was the distance from papillary muscles to the anterior annulus, especially with medial and posterior shifts (r2 = 0.75 and 0.86).

Structured PICO

Does geometric distortion by LV dilation cause ischemic mitral regurgitation more than segmental LV contractile dysfunction in animal models?

P
Population
14 animal models (7 dogs, 7 sheep) undergoing left circumflex coronary ligation to evaluate mechanisms of ischemic mitral regurgitation over up to 8 weeks.
I
Intervention
Left circumflex coronary ligation to induce segmental ischemic LV dysfunction, with evaluation by 3D echocardiography
C
Comparator
Comparison between states of restricted LV expansion (without dilation) versus permitted LV expansion/remodeling (with dilation)
O
Outcome
Mitral regurgitation volume and mitral apparatus geometry quantified by 3D echocardiographysurrogate

Ischemic mitral regurgitation is primarily driven by geometric distortion of the mitral apparatus due to LV dilation rather than segmental LV contractile dysfunction alone.

Main Result

Effect estimate: r2 = 0.75 and 0.86

Abstract

OBJECTIVES: This study aimed to separate proposed mechanisms for segmental ischemic mitral regurgitation (MR), including left ventricular (LV) dysfunction versus geometric distortion by LV dilation, using models of acute and chronic segmental ischemic LV dysfunction evaluated by three-dimensional (3D) echocardiography. BACKGROUND: Dysfunction and dilation-both mechanisms with practical therapeutic implications-are difficult to separate in patients. METHODS: In seven dogs with acute left circumflex (LCX) coronary ligation, LV expansion was initially restricted and then permitted to occur. In seven sheep with LCX branch ligation, LV expansion was also initially limited but became prominent with remodeling over eight weeks. Three-dimensional echo reconstruction quantified mitral apparatus geometry and MR volume. RESULTS: In the acute model, despite LV dysfunction with ejection fraction = 23 +/- 8%, MR was initially trace with limited LV dilation, but it became moderate with subsequent prominent dilation. In the chronic model, MR was also initially trace, but it became moderate over eight weeks as the LV dilated and changed shape. In both models, the only independent predictor of MR volume was increased tethering distance from the papillary muscles (PMs) to the anterior annulus, especially medial and posterior shift of the ischemic medial PM, measured by 3D reconstruction (r2 = 0.75 and 0.86, respectively). Mitral regurgitation volume did not correlate with LV ejection fraction or dP/dt. CONCLUSIONS: Segmental ischemic LV contractile dysfunction without dilation, even in the PM territory, fails to produce important MR. The development of MR relates strongly to changes in the 3D geometry of the mitral apparatus, with implications for approaches to restore a more favorable configuration.

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Cite This Study

Otsuji et al. (2001) studied Ischemic mitral regurgitation (n=14). Left circumflex coronary ligation with permitted LV expansion vs. Restricted LV expansion was evaluated on Mitral regurgitation volume (r2 = 0.75 and 0.86). Changes in the 3D geometry of the mitral apparatus, specifically increased tethering distance, strongly predicted mitral regurgitation volume in acute (r2=0.75) and chronic (r2=0.86) animal models.

synapsesocial.com/papers/6a355e04eae82deb18abe841https://doi.org/10.1016/s0735-1097(00)01134-7
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