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Does coronary artery disease with stressed myocardial ischemia alter heart rate variability?
1Department of Medicine, Taichung Veterans General Hospital, Taiwan, R.O.C.
Insights
This study found that neither atherosclerotic nor significant coronary artery disease with stressed myocardial ischemia affects 24-hour heart rate variability (HRV). These findings suggest HRV is not impaired in patients with these conditions.
Area of Science:
- Cardiology
- Medical Research
Background:
- Decreased heart rate variability (HRV) is linked to higher mortality post-myocardial infarction.
- The connection between HRV and myocardial ischemia is not well-established.
- This study investigates HRV in relation to coronary atherosclerosis and stenosis in patients with myocardial ischemia.
Purpose of the Study:
- To examine the relationship between HRV and coronary artery atherosclerosis.
- To assess the association between HRV and the degree of coronary stenosis in patients experiencing myocardial ischemia.
Main Methods:
- Included 46 patients (50-79 years) and 17 healthy volunteers (40-74 years).
- Utilized left ventriculogram, coronary angiogram, and ambulatory EKG.
- Measured HRV using time-domain (SDNN, SDANN, rMSSD, pNN50) and frequency-domain (low and high frequency) metrics.
Main Results:
- No significant differences in HRV were observed between patients with atherosclerotic coronary arteries and those with normal coronary arteries.
- No significant differences in HRV were found between patients with significant coronary artery disease and the control group or normal coronary artery group.
Conclusions:
- Atherosclerotic or significant coronary artery disease with stressed myocardial ischemia does not appear to impair 24-hour HRV.
- These results challenge previous assumptions about HRV in the context of coronary artery disease and ischemia.
Background:
Research has shown that decreased heart rate variability (HRV) is independently associated with increased mortality after acute myocardial infarction. However, the relationship between HRV and myocardial ischemia still remains controversial. The purposes of this study were (1) to determine the relationship between HRV and atherosclerosis of the coronary artery; and (2) to determine the relationship between HRV and the extent of coronary stenosis in patients with stressed myocardial ischemia.
Methods:
Forty-six patients, 41 males and 5 females, were included in this study. Ages ranged from 50 years to 79 years. Seventeen volunteers served as the control group, which was comprised of 15 males and 2 females of ages ranging from 40 years to 74 years. For each patient a left ventriculogram and a coronary angiogram were performed. According to their coronary angiograms, patients were divided into normal coronary artery group, atherosclerotic coronary artery group and significant coronary artery disease group. An ambulatory EKG was performed on each patient and volunteer. Heart rate variability was defined as SDNN, SDANN, rMSSD, and pNN50 in time domain measures; and low and high frequency in frequency domain measures.
Results:
There were no significant differences in all variables of heart rate variability between the atherosclerotic coronary artery group and normal coronary artery group. In addition, there were no significant differences in all variables between the significant coronary artery disease group and the control group or between the significant coronary artery disease group and the normal coronary artery group.
Conclusions:
These studies have shown that atherosclerotic or significant coronary artery disease with stressed myocardial ischemia does not impair 24-hour heart rate variability.
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