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September 1, 1993Circulation254 citationsOpen Access

Regional differences in function within noninfarcted myocardium during left ventricular remodeling.

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CKChristoper M. KramerJLJoão A.C. LimaNRNathaniel Reichek

Key Result

Experimental myocardial infarction in 7 sheep showed persistent differences in segmental shortening between adjacent and remote noninfarcted myocardium up to 6 months post-infarction.

Key Points

  • This research aims to investigate the functional differences between adjacent and remote noninfarcted myocardium during left ventricular remodeling following myocardial infarction.
  • Ligation of the mid left anterior descending coronary artery in seven sheep to create anteroapical infarcts.
  • Magnetic resonance imaging was conducted at multiple time points (1 week, 8 weeks, and 6 months post-infarction) to assess left ventricular changes.
  • Measurements included left ventricular volumes, mass, ejection fraction, and segmental shortening in both infarcted and noninfarcted regions.
  • Circumferential and longitudinal segmental shortening differences between adjacent and remote myocardium persisted for up to 6 months post-infarction.
  • Left ventricular volume increased significantly, while ejection fraction declined over the same period.
  • Partial functional improvement was noted in adjacent regions between 1 and 8 weeks after infarction.

Structured PICO

P
Population
7 sheep with anteroapical infarcts produced by ligation of the mid left anterior descending coronary artery and second diagonal branch
I
Intervention
Experimental myocardial infarction via coronary artery ligation
C
Comparator
Baseline (before infarction) and internal comparison between adjacent and remote noninfarcted myocardium
O
Outcome
Regional differences in circumferential and longitudinal segmental shortening, left ventricular volumes, mass, ejection fraction, and lengths of infarcted and noninfarcted segmentssurrogate

In a sheep model of myocardial infarction, persistent functional differences between adjacent and remote noninfarcted myocardium contribute to global left ventricular dilatation and dysfunction during remodeling.

Abstract

BACKGROUND: The mechanisms of ventricular enlargement and dysfunction during postinfarct remodeling remain largely unknown. Although global left ventricular architectural changes after myocardial infarction are well documented, differences in function between adjacent and remote noninfarcted myocardium during left ventricular remodeling have not been investigated. These functional differences may relate to regional differences in wall stress during contraction and may contribute to chamber enlargement and global dysfunction after infarction. METHODS AND RESULTS: Anteroapical infarcts were produced in seven sheep by ligation of the mid left anterior descending coronary artery and second diagonal branch at thoracotomy. Magnetic resonance short-axis and long-axis images tagged by spatial modulation of magnetization were obtained before and 1 week, 8 weeks, and 6 months after infarction. Left ventricular volumes, mass, ejection fraction, and lengths of infarcted and noninfarcted segments were measured. Circumferential and longitudinal shortening in the subendocardium and subepicardium, wall thickness, and histopathology were assessed in infarcted segments and regions adjacent to and remote from the infarct border. We found that a difference in circumferential and longitudinal segmental shortening between adjacent and remote noninfarcted myocardium present at 1 week persisted up to 6 months after myocardial infarction. However, partial improvement of function in adjacent regions occurred during infarct healing between 1 and 8 weeks after infarction. Left ventricular volume increased up to 6 months after infarction, out of proportion to the concomitant eccentric hypertrophy, whereas the ejection fraction fell. Left ventricular dilatation late in the remodeling process was secondary to lengthening of noninfarcted segments, which were free of significant fibrosis. CONCLUSIONS: Left ventricular dilatation and eccentric hypertrophy during remodeling are associated with persistent differences in segmental function between adjacent and remote noninfarcted regions. These functional differences may reflect increased wall stress in adjacent noninfarcted regions and contribute to the global dilatation and dysfunction characteristic of left ventricular remodeling after infarction.

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Cite This Study

Kramer et al. (1993) studied Myocardial infarction and left ventricular remodeling (n=7). Experimental myocardial infarction (coronary ligation) vs. Remote noninfarcted myocardium was evaluated on Circumferential and longitudinal segmental shortening, left ventricular volumes, mass, and ejection fraction. Experimental myocardial infarction in 7 sheep showed persistent differences in segmental shortening between adjacent and remote noninfarcted myocardium up to 6 months post-infarction.

synapsesocial.com/papers/6a0e8fe2a0467873efc842eahttps://doi.org/10.1161/01.cir.88.3.1279
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Also Consider

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

  1. 1Regional myocardial function and dimensions early and late after myocardial infarction in the unanesthetized dog.1977 · 274 citations
  2. 2Regional Cardiac Dilatation after Acute Myocardial Infarction1979 · 551 citations
  3. 3Progressive ventricular remodeling in rat with myocardial infarction1991 · 501 citations
  4. 4Left Ventricular Size after Acute Myocardial Infarction1973 · 108 citations
  5. 5Late effects of acute infarct dilation on heart size: a two dimensional echocardiographic study1982 · 257 citations