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Transthoracic Speckle Tracking Echocardiography for the Quantitative Assessment of Left Ventricular Myocardial Deformation
Published on: October 20, 2016
R-Wave Peak Time and Subclinical Left Ventricular Dysfunction in Hypertensive Patients: Insights From
Ayca Arslan1, Dogan Ilis1, Inanc Artac1
1Department of Cardiology, Kafkas University School of Medicine, Kars, Türkiye.
Insights
R-wave peak time (RWPT) can detect early heart muscle damage in hypertension patients. This simple ECG measure is a practical tool for identifying subclinical myocardial dysfunction.
Area of Science:
- Cardiology
- Medical Diagnostics
- Biomedical Engineering
Background:
- Hypertension (HT) is a major cause of myocardial dysfunction.
- Early detection of myocardial impairment is challenging.
- Left ventricular global longitudinal strain (LV-GLS) detects subclinical damage but has limited routine use.
- R-wave peak time (RWPT) may indicate conduction delays and structural remodeling.
Purpose of the Study:
- To investigate the association between RWPT and LV-GLS in patients with HT.
- To evaluate RWPT as a potential marker for subclinical myocardial dysfunction in hypertensive individuals.
Main Methods:
- Prospective study of 403 hypertensive patients.
- Transthoracic echocardiography and 12-lead ECG performed.
- LV-GLS assessed via speckle-tracking echocardiography.
- ECG images digitized for RWPT analysis.
Main Results:
- Patients with lower LV-GLS showed significantly longer RWPT and QRS durations.
- RWPT independently predicted impaired LV-GLS (OR: 1.085, P < 0.001).
- ROC analysis yielded an AUC of 0.715 for RWPT (cutoff 45.5 ms).
Conclusions:
- RWPT is a practical and accessible ECG marker.
- RWPT can sensitively detect subclinical myocardial dysfunction in HT patients.
Background:
Hypertension (HT) is one of the most common causes of myocardial dysfunction. Although early detection of myocardial impairment remains challenging, left ventricular global longitudinal strain (LV-GLS) is a sensitive echocardiographic parameter that can identify subclinical myocardial damage. However, its application is limited in routine clinical settings. R-wave peak time (RWPT) is a simple and widely available electrocardiographic parameter that may reflect intramyocardial conduction delay and early structural remodeling. This study aimed to investigate the association between RWPT and LV-GLS in patients with HT.
Methods:
This prospective study included 403 patients with a confirmed diagnosis of HT. All participants underwent transthoracic echocardiography and 12-lead surface ECG. LV-GLS was assessed using speckle-tracking echocardiography. ECG images were digitized and analyzed using ImageJ software, and RWPT was defined as the interval from the onset of the QRS complex to the peak of the R-wave.
Results:
Patients were divided into two groups according to their LV-GLS value of -15.9%, which is defined as the cutoff value of myocardial impairment. Patients with a lower LV-GLS had significantly longer RWPT and QRS durations. In multivariate analysis, RWPT was found to be an independent predictor of impaired LV-GLS (OR: 1.085; 95% CI: 1.056-1.114; P < 0.001). ROC analysis demonstrated an AUC of 0.715 (95% CI: 0.665-0.765; P < 0.001) with a sensitivity of 64.9% and a specificity of 67.7% at a cutoff value of 45.5 ms.
Conclusions:
RWPT may serve as a practical, accessible, and sensitive electrocardiographic marker for detecting subclinical myocardial dysfunction in patients with HT.
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