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In Vivo Quantitative Assessment of Myocardial Structure, Function, Perfusion and Viability Using Cardiac Micro-computed Tomography
Published on: February 16, 2016
Pathologic basis of thallium-201 scintigraphic defects in patients with fatal myocardial injury
Insights
Large thallium-201 defects after myocardial infarction can indicate high mortality. However, these defects may also reflect reversible ischemia, not just myocardial necrosis, impacting survival predictions.
Area of Science:
- Cardiology
- Nuclear Medicine
- Pathology
Background:
- Thallium-201 scintigraphy is used to assess myocardial infarction.
- Large defects on thallium scans are associated with high mortality after acute myocardial infarction.
Purpose of the Study:
- To determine if high-risk thallium scintigrams predict poor survival due to critical loss of myocardium.
- To correlate infarct size with the extent of thallium defect.
Main Methods:
- Quantitative, computer-aided circumferential profile technique for thallium-201 scintigrams.
- Correlation of infarct size (in autopsied patients) with thallium defect extent in three views.
Main Results:
- 62% of patients with large thallium defects (score ≥7.0) had >25% left ventricular (LV) myocardium loss.
- 38% of patients with large defects had smaller infarcts (4-24% LV), suggesting ischemia without necrosis.
- 8/9 patients with >25% LV loss had large defects; 10/11 patients with small defects had <20% LV infarcts.
Conclusions:
- Large thallium defects can predict critical myocardial loss in over 60% of patients.
- Scintigraphic defects may represent a combination of infarct and reversible ischemia.
- Thallium scintigraphy findings need careful interpretation regarding infarct size and ischemic burden.
Abstract:
Using a quantitative, computer-aided circumferential profile technique, we have shown that thallium-201 scintigrams with large defects can identify a group of patients with a high mortality after acute myocardial infarction. To determine whether high-risk thallium scintigrams predict poor survival because of a critical loss of myocardium, we correlated infarct size in 24 autopsied patients with the extent of thallium defect in three views. Of 13 patients with large defects (computer score greater than or equal to 7.0) eight (62%) had greater than 25% loss of left ventricular (LV) myocardium, but five (38%) had smaller infarcts (4--24% of LV myocardium), suggesting that part of the scintigraphic defect was related to ischemia without necrosis. Eight of the nine patients with loss greater than or equal to 25% LV myocardium had large defects. In 10 of 11 patients with small defects (computer score less than 7.0), infarcts involved less than 20% of LV myocardium. Although scintigrams with large defects predicted a critical loss of myocardium in over 60% of our patients, they included an important second group, in which the scintigraphic defect appeared to reflect a small infarct and a large surrounding area of reversibly ischemic myocardium.
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