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Published on: April 7, 2022
Prediction of premature ventricular complex origin in left vs. right ventricular outflow tract: a novel anatomical
Viatcheslav Korshunov1, Diego Penela2, Markus Linhart1
1Arrhythmia Section, Cardiology Department, Cardiovascular Institute, Hospital Clínic, University of Barcelona and IDIBAPS (Institut d'Investigació Agustí Pi i Sunyer), C/Villarroel 170, Barcelona, Spain.
Insights
Aortopulmonary valvular planar angulation (APVPA) can predict the origin of left ventricular outflow tract ventricular arrhythmias (OTVA). Higher APVPA values indicate a left-sided origin, aiding in ablation procedures.
Area of Science:
- Cardiology
- Cardiac Electrophysiology
- Medical Imaging
Background:
- Left ventricular outflow tract ventricular arrhythmias (OTVA) are linked to hypertension, age, and LV dysfunction, suggesting LV overload.
- Anatomical variations in the LV outflow tract (LVOT) may influence the site of origin (SOO) of OTVA.
Purpose of the Study:
- To investigate if anatomical modifications of the LV outflow tract (LVOT) can predict the site of origin (SOO) of left versus right ventricular OTVA.
- To determine the predictive value of aortopulmonary valvular planar angulation (APVPA) for LVOT-VA.
Main Methods:
- Cardiac multidetector computed tomography (MDCT) was used in 56 patients undergoing OTVA ablation.
- MDCT data was imported into the CARTO system for mapping and ablation guidance.
- Analysis included aortic root dimensions and aortopulmonary valvular planar angulation (APVPA).
Main Results:
- The left ventricle (LV) was the origin in 57% of patients (LVOT-VA).
- LVOT-VA patients were more likely to be male, older, and have hypertension.
- Higher APVPA (≥62°) was a significant independent predictor of LVOT origin, with 94% sensitivity and 83% specificity.
Conclusions:
- Aortopulmonary valvular planar angulation (APVPA) measurement is a valuable tool for predicting the origin of ventricular arrhythmias from the LV outflow tract.
- APVPA serves as a marker for chronic LV overload, aiding in differentiating left vs. right ventricular OTVA origins.
Aims:
Left ventricular (LV) outflow tract ventricular arrhythmias (OTVA) are associated with hypertension (HT), older age, and LV dysfunction, suggesting that LV overload plays a role in the aetiopathogenesis. We hypothesized that anatomical modifications of the LV outflow tract (LVOT) could predict left vs. right OTVA site of origin (SOO).
Methods And Results:
Fifty-six (32 men, 53 ± 18 years old) consecutive patients referred for OTVA ablation were included. Cardiac multidetector computed tomography was performed before ablation and then imported to the CARTO system to aid the mapping and ablation procedure. Anatomical characteristics of the aortic root as well as aortopulmonary valvular planar angulation (APVPA) were analysed. The LV was the OTVA SOO (LVOT-VA) in 32 (57%) patients. These patients were more frequently male (78% vs. 22%, P = 0.001), older (57 ± 18 vs. 47 ± 18 years, P = 0.055), and more likely to have HT (59% vs. 21%, P = 0.004), compared to right OTVA patients. Aortopulmonary valvular planar angulation was higher in LVOT-VA patients (68 ± 5° vs. 55 ± 6°, respectively; P < 0.001). Absolute size of all aortic root diameters was associated with LVOT origin. However, after indexing by body surface area, only sinotubular junction diameter maintained a significant association (P = 0.049). Multivariable analysis showed that APVPA was an independent predictor of LVOT origin. Aortopulmonary valvular planar angulation ≥62° reached 94% sensitivity and 83% specificity (area under the curve 0.95) for predicting LVOT origin.
Conclusions:
The measurement of APVPA as a marker of chronic LV overload is useful for the prediction of left vs. right ventricular OTVA origin.
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