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Non-invasive imaging to identify susceptibility for ventricular arrhythmias in ischaemic left ventricular dysfunction
Mischa T Rijnierse1, Cornelis P Allaart1, Stefan de Haan1
1Department of Cardiology, Institute for Cardiovascular Research (ICaR-VU), VU University Medical Center, Amsterdam, the Netherlands.
Insights
Impaired hyperaemic myocardial blood flow (MBF) is the best predictor of ventricular arrhythmias (VA) in patients with ischaemic cardiomyopathy. Combining imaging markers did not improve prediction beyond hyperaemic MBF alone.
Area of Science:
- Cardiology
- Medical Imaging
- Electrophysiology
Background:
- Ventricular arrhythmias (VA) pose a significant risk in ischaemic cardiomyopathy.
- Non-invasive imaging modalities like myocardial perfusion, sympathetic denervation, and scar size assessment aid in predicting VA.
- These imaging parameters may share underlying pathophysiological mechanisms.
Purpose of the Study:
- To compare the predictive value of myocardial perfusion, sympathetic denervation, and scar size for VA inducibility.
- To assess these parameters in a head-to-head manner in patients with ischaemic cardiomyopathy.
Main Methods:
- 52 patients with ischaemic heart disease and low ejection fraction (≤35%) undergoing primary prevention implantable cardioverter-defibrillator (ICD) implantation were studied.
- Cardiovascular MRI assessed left ventricular (LV) volumes, function, and scar size.
- Positron emission tomography ([ (15)O]H2O and [(11)C]hydroxyephedrine) evaluated myocardial blood flow (MBF) and sympathetic innervation.
- Electrophysiological study (EPS) determined VA inducibility post-ICD implantation.
Main Results:
- Patients with inducible VA (positive EPS) had significantly impaired global hyperaemic MBF (p=0.003) and larger sympathetic denervation size (p=0.048).
- Scar size and perfusion defect size showed a trend towards significance in predicting VA inducibility.
- Impaired hyperaemic MBF emerged as the single best independent predictor of VA inducibility (OR 0.78, p=0.007).
- No significant differences were found in LV volumes, ejection fraction, or innervation-perfusion mismatch.
Conclusions:
- Global impaired hyperaemic MBF is the sole independent predictor of VA inducibility among the assessed imaging parameters.
- Combining multiple imaging variables did not offer incremental predictive value over hyperaemic MBF alone.
- Hyperaemic MBF is a crucial marker for arrhythmic risk stratification in ischaemic cardiomyopathy.
Objective:
Non-invasive imaging of myocardial perfusion, sympathetic denervation and scar size contribute to enhanced risk prediction of ventricular arrhythmias (VA). Some of these imaging parameters, however, may be intertwined as they are based on similar pathophysiology. The aim of this study was to assess the predictive role of myocardial perfusion, sympathetic denervation and scar size on the inducibility of VA in patients with ischaemic cardiomyopathy in a head-to-head fashion.
Methods:
52 patients with ischaemic heart disease and left ventricular ejection fraction (LVEF) ≤35%, referred for primary prevention implantable cardioverter-defibrillator (ICD) implantation, were included. Late gadolinium-enhanced cardiovascular MRI was performed to assess LV volumes, function and scar size. Using [(15)O]H2O and [(11)C]hydroxyephedrine positron emission tomography, both resting and hyperaemic myocardial blood flow (MBF), and sympathetic innervation were assessed. After ICD implantation, an electrophysiological study (EPS) was performed and was considered positive in case of sustained VA.
Results:
Patients with a positive EPS (n=25) showed more severely impaired global hyperaemic MBF (p=0.003), larger sympathetic denervation size (p=0.048) and tended to have larger scar size (p=0.07) and perfusion defect size (p=0.06) compared with EPS-negative patients (n=27). No differences were observed in LV volumes, LVEF and innervation-perfusion mismatch size. Multivariable analysis revealed that impaired hyperaemic MBF was the single best independent predictor for VA inducibility (OR 0.78, 95% CI 0.65 to 0.94, p=0.007). A combination of risk markers did not yield incremental predictive value over hyperaemic MBF alone.
Conclusions:
Of all previously validated approaches to evaluate the arrhythmic substrate, global impaired hyperaemic MBF was the only independent predictor of VA inducibility. Moreover, a combined approach of different imaging variables did not have incremental value.
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