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The electrocardiographic diagnosis of left ventricular hypertrophy: correlation with quantitative angiography
Insights
The 12-lead electrocardiogram (ECG) is unreliable for diagnosing left ventricular hypertrophy. While ECG changes correlate with left ventricular dimensions, they lack sensitivity and specificity for accurate diagnosis.
Area of Science:
- Cardiology
- Medical Diagnostics
Background:
- Left ventricular hypertrophy (LVH) is a significant cardiovascular condition.
- Accurate diagnosis of LVH is crucial for patient management and prognosis.
Purpose of the Study:
- To evaluate the reliability of the 12-lead scalar electrocardiogram (ECG) in diagnosing left ventricular hypertrophy (LVH).
- To determine the correlation between ECG parameters and angiographically determined left ventricular dimensions.
Main Methods:
- Correlation analysis between QRS complex voltage parameters and left ventricular mass, volume, and wall thickness.
- Assessment of sensitivity and specificity of ECG criteria for LVH detection in 103 patients.
Main Results:
- Simple and multiple correlations between QRS voltage and left ventricular dimensions were poor but significant.
- Increased QRS voltage and repolarization abnormalities were associated with increased LVH, but with poor sensitivity and specificity.
- A negative T wave in lead I or V6 was sensitive but not specific for LVH; "high voltage" criteria improved sensitivity but decreased specificity.
Conclusions:
- Current electrocardiographic criteria for diagnosing left ventricular hypertrophy are insensitive and nonspecific.
- Electrocardiography can indicate increased left ventricular dimensions but is not a definitive diagnostic tool for LVH.
Abstract:
The 12-lead scalar electrocardiogram has been correlated with angiographically determined left ventricular dimensions in 103 consecutive patients in order to determine the reliability of the electrocardiographic diagnosis of left ventricular hypertrophy. Simple and multiple correlations between various parameters of QRS complex voltage and left ventricular mass, volume and wall thickness were poor but statistically significant. Mean voltage of QRS complex parameters was higher in patients with increased left ventricular mass and volume than in those with normal mass and volume, but the sensitivity of individual voltage parameters in identifying increased mass and volume was poor. A negative T wave in lead l or V6 was the most sensitive indicator of increased left ventricular mass and volume, but the specificity of this variable was poor. The sensitivity of "high voltage" of the QRS complex was increased (67 percent true positives) when moderate to marked increase in left ventricular mass had occurred, but at the expense of decreased specificity (13 percent false positives). It is concluded that while an increase in left ventricular dimensions tends to be associated with an increase in QRS voltage and a repolarization abnormality, the currently used electrocardiographic criteria for the diagnosis of left ventricular hypertrophy are both insensitive and nonspecific.
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