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April 3, 1986New England Journal of Medicine1,296 citations

Reversibility of Cardiac Wall-Motion Abnormalities Predicted by Positron Tomography

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JTJan H. TillischRBRichard C. BrunkenRMRobert C. Marshall

Key Points

  • The aim is to determine the reversibility of left ventricular wall-motion abnormalities using PET imaging before surgery.
  • Seventeen patients undergoing coronary-artery bypass surgery were evaluated.

Structured PICO

Does preoperative PET imaging with 13NH3 and 18FDG accurately predict the reversibility of left ventricular wall-motion abnormalities in patients undergoing coronary-artery bypass surgery?

P
Population
17 patients with preoperative abnormalities in left ventricular wall motion who underwent coronary-artery bypass surgery
I
Intervention
Preoperative Positron emission tomography (PET) imaging with nitrogen-13-ammonia (13NH3) and fluorine-18-deoxyglucose (18FDG)
C
Comparator
Electrocardiograms showing pathological Q waves
O
Outcome
Reversibility of left ventricular wall-motion abnormalities after grafting, quantified by radionuclide or contrast angiographysurrogate

Preoperative PET imaging with 13NH3 and 18FDG accurately predicts the reversibility of left ventricular wall-motion abnormalities following surgical revascularization.

Abstract

Positron emission tomography (PET) can be used with nitrogen-13-ammonia (13NH3) to estimate regional myocardial blood flow, and with fluorine-18-deoxyglucose (18FDG) to measure exogenous glucose uptake by the myocardium. We used PET to predict whether preoperative abnormalities in left ventricular wall motion in 17 patients who underwent coronary-artery bypass surgery were reversible. The abnormalities were quantified by radionuclide or contrast angiography or both, before and after grafting. PET images were obtained preoperatively. Abnormal wall motion in regions in which PET images showed preserved glucose uptake was predicted to be reversible, whereas abnormal motion in regions with depressed glucose uptake was predicted to be irreversible. According to these criteria, abnormal contraction in 35 of 41 segments was correctly predicted to be reversible (85 percent predictive accuracy), and abnormal contraction in 4 of 26 regions was correctly predicted to be irreversible (92 percent predictive accuracy). In contrast, electrocardiograms showing pathological Q waves in the region of asynergy predicted irreversibility in only 43 percent of regions. We conclude that PET imaging with 13NH3 to assess blood flow and 18FDG to assess the metabolic viability of the myocardium is an accurate method of predicting potential reversibility of wall-motion abnormalities after surgical revascularization.

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Cite This Study

Tillisch et al. (1986) studied this question.

synapsesocial.com/papers/6a10bfac326831f8a2645201https://doi.org/10.1056/nejm198604033141405
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Also Consider

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

  1. 1Relationship between regional myocardial perfusion and the presence, severity and reversibility of asynergy in patients with coronary heart disease.1978 · 67 citations
  2. 2Detection of residual jeopardized myocardium 3 weeks after myocardial infarction by exercise testing with thallium-201 myocardial scintigraphy.1980 · 116 citations
  3. 3Observer variance in the qualitative evaluation of left ventricular wall motion and the quantitation of left ventricular ejection fraction using rest and exercise multigated blood pool imaging.1980 · 118 citations
  4. 4Reversible asynergy. Histopathologic and electrographic correlations in patients with coronary artery disease.1976 · 175 citations
  5. 5Sustained regional dysfunction produced by prolonged coronary stenosis: gradual recovery after reperfusion.1983 · 260 citations