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October 1, 2000Journal of Applied Physiology154 citations

Echocardiographic criteria for detection of postinfarction congestive heart failure in rats

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ISIvar SjaastadOSOle M. SejerstedAIArnfinn Ilebekk

Key Result

High-frame rate echocardiography identified posterior wall shortening velocity as the only variable that separated failing and nonfailing myocardial infarction clusters in rats.

Key Points

  • The aim is to establish echocardiographic criteria to detect congestive heart failure in rats post-myocardial infarction.
  • Echocardiographic evaluation performed five weeks after myocardial infarction induced by left coronary occlusion
  • Control group included sham-operated rats
  • J-tree cluster analysis used to assess echocardiographic parameters indicative of congestive heart failure.
  • Cluster analysis identified one sham cluster and two myocardial infarction clusters
  • One MI cluster exhibited characteristics of congestive heart failure with elevated left ventricular end diastolic pressure
  • Posterior wall shortening velocity was the key echocardiographic variable distinguishing failing from non-failing MI clusters.

Structured PICO

Does high-frame rate echocardiography identify criteria for congestive heart failure in postinfarction rats?

P
Population
Rats with extensive myocardial infarction induced by left coronary occlusion and sham-operated controls, evaluated 5 weeks post-infarction.
I
Intervention
High-frame rate (~200 Hz), fully digitized, shallow-focus (10-25 mm), two-dimensional, M-mode and Doppler echocardiography
C
Comparator
Sham-operated controls
O
Outcome
Echocardiographic criteria for congestive heart failure (CHF) and separation of failing and nonfailing MI clusterssurrogate

High frame rate echocardiography, specifically posterior wall shortening velocity, can distinguish post-MI rats with congestive heart failure from those without.

Abstract

We evaluated postinfarction myocardial function in rats and determined echocardiographic criteria for congestive heart failure (CHF) using high performance echocardiography. Extensive myocardial infarction (MI) was induced in rats by left coronary occlusion. Sham-operated animals served as controls. Five weeks later, high-frame rate ( approximately 200 Hz), fully digitized, shallow-focus (10-25 mm), two-dimensional, M-mode and Doppler echocardiography was performed. A J-tree cluster analysis was performed using parameters indicative of CHF. Reproducibility was examined. The cluster analysis joined the animals into one Sham and two MI clusters. One of the MI clusters had clinical characteristics of CHF and elevated left ventricular end diastolic pressure. Among the echocardiographic variables, only posterior wall shortening velocity separated the failing and nonfailing MI clusters. We conclude that, by high frame rate echocardiography, it is possible to obtain high- quality recordings in rats. It is feasible to distinguish MI rats with CHF due to myocardial dysfunction from those without failure and to perform longitudinal studies on myocardial function.

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Cite This Study

Sjaastad et al. (2000) studied Postinfarction congestive heart failure. High-frame rate echocardiography vs. Sham-operated animals was evaluated on Echocardiographic criteria for congestive heart failure. High-frame rate echocardiography identified posterior wall shortening velocity as the only variable that separated failing and nonfailing myocardial infarction clusters in rats.

synapsesocial.com/papers/6a6044c68991d14dee004808https://doi.org/10.1152/jappl.2000.89.4.1445
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