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March 28, 2006Annals of Noninvasive Electrocardiology90 citationsOpen Access

The Relationship Between Heart Rate Recovery and Heart Rate Variability in Coronary Artery Disease

HEHarun EvrengülHTHalil TanrıverdiSKSedat Köse

Key Result

Coronary artery disease was associated with significantly reduced heart rate recovery and heart rate variability, with heart rate recovery at 3 minutes strongly correlating with high-frequency heart rate variability (r = 0.69, P = 0.0001).

Study Design

Type

Case-Control (n=71)

Structured PICO

Are heart rate recovery and heart rate variability reduced in patients with coronary artery disease compared to healthy controls, and do these parameters correlate?

P
Population
71 subjects, comprising 33 patients with uncomplicated coronary artery disease and 38 healthy controls, evaluated for heart rate recovery and heart rate variability.
C
Comparator
38 healthy subjects with atypical angina pectoris, negative exercise testing, and normal coronary angiograms.
O
Outcome
Heart rate recovery (HRR) at 1, 2, and 3 minutes post-exercise and steady-state heart rate variability (HRV) parameters (time- and frequency-domain).surrogate

Heart rate recovery and heart rate variability are significantly reduced in uncomplicated coronary artery disease, suggesting HRR can serve as a simple clinical marker for basal autonomic imbalance.

Main Result

Absolute Event Rate: 49.8% vs 70.4%

p-value: p=0.0001

Limitations

  • Small patient population due to strict enrollment criteria
  • Did not evaluate the VO2 cardiovascular conditions of the patients
  • Did not control the rate of breathing during Holter recordings
  • Lack of VO2 cardiovascular condition evaluation
  • Respiratory rate not controlled during HRV recording

Abstract

BACKGROUND: Reduced heart rate recovery (HRR) in coronary artery disease (CAD) is predictive of increased cardiovascular mortality and is related to reduced parasympathetic tonus. OBJECTIVE: To investigate HRR and heart rate variability (HRV) measured at steady state condition and the relationship between these two parameters in CAD. MATERIALS AND METHODS: In our study, we enrolled 33 (28 males, mean age 52.4 +/- 9.6 years) patients with CAD who did not have heart failure, atrial fibrillation, pacemaker, and any disease state that could affect the autonomic functions and 38 age-matched healthy subjects (21 males, mean age 48.3 +/- 7.8 years). All the patients underwent submaximal treadmill exercise testing (Bruce protocol). HRR was calculated by subtracting the heart rate values at the 1st, 2nd, and 3rd minutes of the recovery phase from the peak heart rate (HRR(1), HRR(2), HRR(3)). Before exercise testing, short-term steady state HRV analyses of all subjects were obtained with the time- and frequency-domain methods and were correlated to HRR. For frequency-domain analysis, low-frequency HRV (LF, 0.004-0.15 Hz), high-frequency HRV (HF, 0.15-0.5 Hz), and LF/HF ratio were measured for 5 minutes in the morning. For time-domain analysis, standard deviation of the normal-to-normal NN intervals (SDNN), square root of the mean squared differences of successive N-N intervals (RMSSD), and proportion derived by dividing the number of interval differences of successive N-N intervals greater than 50 ms by the total number of N-N intervals (pNN50) were obtained. Only HRR(3) was used for the correlation analysis. RESULTS: In CAD groups, the HF, an indicator of parasympathetic activation, was significantly reduced, whereas the LF and LF/HF values, which are indicators of sympathetic activity, were increased (P = 0.0001 for each parameter). The time-domain parameters SDNN, RMSSD, and pNN50 were significantly reduced in the patient group (P = 0.0001, P = 0.009, and P = 0.0001, respectively). Similar to the HRV parameters, the HRR(1), HRR(2), and HRR(3) values were significantly reduced in the patient group (P = 0.0001 for each parameter). We observed a significant negative correlation between HRR(3) and LF (r =-0.67, P = 0.0001) and between HRR(3) and LF/HF (r =-0.62, P < 0.0001), while there was a significant positive correlation between HRR(3) and HF, SDNN, RMSSD, and pNN50 (r = 0.69, P = 0.0001; r = 0.41, P = 0.0001; r = 0.31, P = 0.008; and r = 0.44, P = 0.0001). CONCLUSIONS: HRR and HRV are significantly reduced in CAD. The reduction in HRR is parallel to the changes in HRV parameters. HRR, which can be measured easily in the recovery phase of exercise testing, can be used to detect the depression of parasympathetic tonus and to evaluate the basal autonomic balance in this patient group.

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Cite This Study

Evrengül et al. (2006) conducted a case-control in Coronary Artery Disease (n=71). Coronary Artery Disease vs. Healthy subjects was evaluated on Heart rate recovery at 3 minutes (HRR3) (p=0.0001). Coronary artery disease was associated with significantly reduced heart rate recovery and heart rate variability, with heart rate recovery at 3 minutes strongly correlating with high-frequency heart rate variability (r = 0.69, P = 0.0001).

synapsesocial.com/papers/6a1eece5818505c9bb88cbadhttps://doi.org/10.1111/j.1542-474x.2006.00097.x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Circadian variation of heart rate variability1990 · 133 citations
  2. 2Muscle pump and central command during recovery from exercise in humans1999 · 114 citations
  3. 3Heart rate recovery after exercise: relations to heart rate variability and complexity2002 · 288 citations
  4. 4Decreased magnitude of heart rate spectral components in coronary artery disease. Its relation to angiographic severity.1990 · 382 citations
  5. 5Prospective Study of Heart Rate Variability and Mortality in Chronic Heart Failure1998 · 1,180 citations