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Updated: Oct 6, 2025

Real-time Pressure-volume Analysis of Acute Myocardial Infarction in Mice
Published on: July 2, 2018
Intracoronary pressures to predict myocardial viability in patients with ischemic left ventricular dysfunction
Nicola Marchese1, Emanuele Barbato2,3, Giuseppe Di Gioia3
1Unit of Cardiology, Fondazione IRCCS Casa Sollievo della Sofferenza, San Giovanni Rotondo, Foggia, Italy.
Insights
Intracoronary pressure measurements, specifically ΔPd/Pa and %ΔPd/Pa, can accurately predict myocardial viability in patients with coronary stenosis. These pressure indices help assess the extent of viable heart muscle, guiding revascularization decisions.
Area of Science:
- Cardiology
- Interventional Cardiology
- Myocardial Viability Assessment
Background:
- Myocardial viability is crucial for predicting outcomes after coronary revascularization in patients with ischemic left ventricular dysfunction.
- Assessing viability in the myocardium subtending coronary stenosis is essential for treatment planning.
Purpose of the Study:
- To evaluate the role of intracoronary pressure parameters in assessing myocardial viability.
- To determine if invasive pressure-derived indices correlate with the extent of myocardial viability.
Main Methods:
- Intracoronary pressure wire measurements were performed in 64 coronary lesions (≥50% stenosis) in 59 patients.
- Pressure indices (resting and hyperemic Pd/Pa, ΔPd/Pa, %ΔPd/Pa) were compared with myocardial viability assessed by single-photon emission tomography (%SRStarget).
- Receiver operating characteristic (ROC) curves were used to identify predictive cut-offs for viability.
Main Results:
- Significant correlations were found between ΔPd/Pa and %ΔPd/Pa with %SRStarget (p < 0.001).
- ΔPd/Pa and %ΔPd/Pa were significantly higher in myocardial areas with high viability (p < 0.001).
- ROC analysis identified cut-offs (ΔPd/Pa > 0.11, %ΔPd/Pa > 15%) predicting >80% viability with good sensitivity and specificity.
Conclusions:
- Intracoronary pressure indices ΔPd/Pa and %ΔPd/Pa effectively predict the magnitude of downstream myocardial viability.
- These pressure-derived parameters offer a valuable tool for assessing myocardial viability in patients with post-ischemic left ventricular dysfunction and coronary stenosis.
Abstract:
To investigate the role of intracoronary pressure parameters in the assessment of viability in the myocardium subtending a significant coronary stenosis. In patients with ischemic left ventricular dysfunction, the presence of myocardial viability is related to the expected benefits derived from coronary revascularization. Intracoronary pressure wire-based measurements were performed in 64 coronary lesions of ≥50% stenosis severity of 59 patients with postischemic left ventricular dysfunction, segmental left ventricular wall motion abnormalities, and substantial viability in the myocardial territory subtending the investigated stenotic coronaries, defined as the percent summed rest score in the target territory (%SRStarget ) ≤60% at the single-photon emission tomography. Invasive pressure-derived indexes like resting and hyperemic Pd/Pa, ΔPd/Pa, and %ΔPd/Pa (defined as the absolute difference and percent decrease between resting and hyperemic Pd/Pa respectively) were compared with %SRStarget . A significant correlation was found between ΔPd/Pa (Spearman's p: -0.760, p < 0.001) and %ΔPd/Pa (p: -0.733; p < 0.001) with %SRStarget. These results were confirmed after correction for potential confounders. According to %SRStarget median value, myocardial areas with high and low viability were compared: ΔPd/Pa and %ΔPd/Pa were significantly higher in areas with high viability (p < 0.001 for both). According to receiver operating characteristic curves, we identified two cut-offs (ΔPd/Pa > 0.11 and %ΔPd/Pa > 15%) able to predict >80% viability with good sensitivity and specificity. Our study suggests that, in patients with postischemic left ventricular dysfunction and significant coronary stenosis, intracoronary pressures indexes like ΔPd/Pa and %ΔPd/Pa are able to predict the magnitude of downstream myocardial viability.
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