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A novel approach for obtaining 12-lead electrocardiograms in horses
Eva M Hesselkilde1, Jonas L Isaksen2, Bettina V Petersen1
1Department of Veterinary Clinical Sciences, Faculty of Health and Medical Sciences, University of Copenhagen, Taastrup, Denmark.
Insights
A new equine electrocardiogram (ECG) method, the Copenhagen method, repositions limb electrodes for greater accuracy. This improves ECG consistency and reliability in horses, potentially expanding its use in equine medicine.
Area of Science:
- Veterinary Cardiology
- Equine Electrophysiology
Background:
- 12-lead electrocardiograms (ECGs) are underutilized in equine medicine.
- Current guidelines for equine ECGs lead to significant variability in recordings.
- This variability stems from inappropriate limb lead placement relative to the cardiac electrical axis.
Purpose of the Study:
- To develop an improved method for 12-lead ECG acquisition in horses.
- The method is based on equine electrophysiology and cardiac electrical vectors.
- The goal is to minimize ECG variability and enhance diagnostic utility.
Main Methods:
- A novel electrode placement strategy, the Copenhagen method, was developed.
- Electrodes were repositioned from extremities to the thorax.
- Two ECGs were recorded from 35 healthy Standardbred horses: one with the Copenhagen method and one with existing guidelines.
Main Results:
- The Copenhagen method significantly reduced variation in the mean electrical axis (SD decreased from 24.6° to 1.6°).
- This resulted in stable and repeatable ECG configurations.
- The new method demonstrated superior consistency compared to existing guidelines.
Conclusions:
- The Copenhagen method aligns ECG recording with the cardiac electrical axis in horses.
- This novel approach yields more consistent and reliable equine ECGs.
- The Copenhagen method holds potential for broader application of 12-lead ECGs in equine veterinary practice.
Background:
In equine medicine, 12-lead electrocardiograms (ECGs) rarely are used, which may in part be a result of shortcomings in the existing guidelines for obtaining 12-lead ECGs in horses. The guidelines recommend placing the limb leads on the extremities, which is inappropriate because the ventricular mean electrical axis is then perpendicular to the limb leads, leading to large variations in ECG configuration even among healthy horses. From an electrophysiological point of view, the leads instead should be parallel to the electrical axis to minimize variability.
Objective:
Develop an improved method for obtaining 12-lead ECGs in horses based on electrophysiology and cardiac electrical vectors relevant to horses.
Animals:
Thirty-five healthy Standardbred horses.
Methods:
Two ECGs obtained at rest; 1 ECG with the electrodes placed according to the method developed in the present study, the Copenhagen method, and 1 ECG following existing guidelines.
Results:
In the Copenhagen method, we repositioned the limb electrodes to the thorax to better capture the electrical activity of the heart. Variation in the mean electrical axis decreased dramatically with the Copenhagen method (SD decreased from 24.6° to 1.6°, P < .001). Consequently, this new method provided stable ECGs with repeatable configurations.
Conclusions And Clinical Importance:
With this novel method, the ECG is recorded with respect to the electric axis to fully realize the potential of 12-lead ECG in horses. The Copenhagen method delivered more consistent and reliable ECG recordings compared to existing guidelines. The Copenhagen method potentially allows for expanded use of 12-lead ECGs in equine medicine.
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