Related Experiment Video
Updated: Jun 21, 2025

Estimating Bilateral Atrial Function by Cardiovascular Magnetic Resonance Feature Tracking in Patients with Paroxysmal Atrial Fibrillation
Published on: July 20, 2022
Role of the Electrocardiogram for Identifying the Development of Atrial Fibrillation
Sahar Memar Montazerin1, Zareh Ekmekjian1, Chrystina Kiwan1
1From the Department of Medicine, NYMC Saint Michaels Medical Center, Newark, NJ.
Insights
Electrocardiogram (ECG) P-wave variables can predict future atrial fibrillation (AF) risk. This review explores ECG features, risk models, and screening for AF prediction.
Area of Science:
- Cardiology
- Medical Diagnostics
Background:
- Atrial fibrillation (AF) is a common arrhythmia linked to significant morbidity and mortality, including stroke.
- Predicting AF development is crucial for early intervention and improved patient outcomes.
Purpose of the Study:
- To review the pathophysiology and electrocardiographic features of atrial fibrillation.
- To discuss predictive ECG variables, risk models, and the role of monitoring devices in AF screening.
Main Methods:
- Literature review of studies investigating ECG parameters for AF prediction.
- Analysis of existing risk models incorporating clinical and ECG data.
- Discussion of current guidelines and screening strategies.
Main Results:
- Specific ECG variables, particularly P-wave characteristics, show promise in predicting future AF.
- Several risk models integrating clinical and ECG data have been developed.
- The clinical utility of these models and intensive screening protocols remains under investigation.
Conclusions:
- ECG analysis, especially P-wave morphology, offers a valuable, non-invasive method for assessing AF risk.
- Further research and guideline clarification are needed to integrate predictive models into routine clinical practice for AF screening.
Abstract:
Atrial fibrillation (AF), a prevalent cardiac arrhythmia, is associated with increased morbidity and mortality worldwide. Stroke, the leading cause of serious disability in the United States, is among the important complications of this arrhythmia. Recent studies have demonstrated that certain clinical variables can be useful in the prediction of AF development in the future. The electrocardiogram (ECG) is a simple and cost-effective technology that is widely available in various healthcare settings. An emerging body of evidence has suggested that ECG tracings preceding the development of AF can be useful in predicting this arrhythmia in the future. Various variables on ECG especially different P wave parameters have been investigated in the prediction of new-onset AF and found to be useful. Several risk models were also introduced using these variables along with the patient's clinical data. However, current guidelines do not provide a clear consensus regarding implementing these prediction models in clinical practice for identifying patients at risk of AF. Also, the role of intensive screening via ECG or implantable devices based on this scoring system is unclear. The purpose of this review is to summarize AF and various related terminologies and explain the pathophysiology and electrocardiographic features of this tachyarrhythmia. We also discuss the predictive electrocardiographic features of AF, review some of the existing risk models and scoring system, and shed light on the role of monitoring device for screening purposes.
Related Concept Videos
Electrocardiogram
Three major waveforms are present in a typical ECG recording: the P wave, the QRS complex, and...
Electrocardiogram Fundamentals
An electrocardiogram (ECG) is a diagnostic tool for identifying cardiac conditions such as arrhythmias, conduction abnormalities, and myocardial ischemia.
Definition
An electrocardiogram (ECG) visualizes the heart's electrical activity by tracing the electrical movement associated with each heartbeat on a graph or monitor. As the heart beats, an electrical wave passes through it, correlating with the cardiac cycle events.
Parts of an ECG
An ECG utilizes electrodes on the skin...
Correlation between ECG and Cardiac Cycle
A cardiac action potential originates in the SA node and spreads throughout the atria and the AV node in approximately 0.03 seconds. This results in the P wave in an ECG and triggers atrial contraction. The action potential is then briefly slowed at the AV node, allowing the atria to contract and fill the ventricles with blood before...
Disturbances in Heart Rhythm
Arrhythmias are categorized by their speed, rhythm, and origin. A slow...
Mechanism of Cardiac Arrhythmias
ECG Interpretation of Rhythms
Components of the Electrocardiogram
The primary components of a normal ECG waveform in Normal sinus rhythm(NSR) include the P wave, PR interval, QRS complex, ST segment, T wave, and occasionally a U wave.
ECG waveforms are divided by vertical and horizontal lines at standard intervals.
The horizontal axis measures time and rate, and the vertical axis measures amplitude or voltage....

