Why the study?
Does heart rate and gender affect the spatial QRS/T angle and TCRT during exercise ECG in healthy subjects?
Does heart rate and gender affect the spatial QRS/T angle and TCRT during exercise ECG in healthy subjects?
The spatial QRS/T angle and TCRT are significantly affected by heart rate and gender during exercise, demonstrating delayed rate adaptation and hysteresis, which should be considered when using these parameters for risk stratification.
TCRT exercise slopes differ by sex; hypothesis-generating for sex-adjusted ECG risk models in prospective cohorts.
BACKGROUND: QRS/T angle and the cosine of the angle between QRS and T-wave vectors (TCRT), measured from standard 12-lead electrocardiogram (ECG), have been used in risk stratification of patients. This study assessed the possible rate dependence of these variables during exercise ECG in healthy subjects. METHODS: Forty healthy volunteers, 20 men and 20 women, aged 34.6 +/- 3.4, underwent an exercise ECG testing. Twelve-lead ECG was recorded from each test subject and the spatial QRS/T angle and TCRT were automatically analyzed in a beat-to-beat manner with custom-made software. The individual TCRT/RR and QRST/RR patterns were fitted with seven different regression models, including a linear model and six nonlinear models. RESULTS: TCRT and QRS/T angle showed a significant rate dependence, with decreased values at higher heart rates (HR). In individual subjects, the second-degree polynomic model was the best regression model for TCRT/RR and QRST/RR slopes. It provided the best fit for both exercise and recovery. The overall TCRT/RR and QRST/RR slopes were similar between men and women during exercise and recovery. However, women had predominantly higher TCRT and QRS/T values. With respect to time, the dynamics of TCRT differed significantly between men and women; with a steeper exercise slope in women (women, -0.04/min vs -0.02/min in men, P < 0.0001). In addition, evident hysteresis was observed in the TCRT/RR slopes; with higher TCRT values during exercise. CONCLUSIONS: The individual patterns of TCRT and QRS/T angle are affected by HR and gender. Delayed rate adaptation creates hysteresis in the TCRT/RR slopes.
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Kenttä et al. (2010) studied this question.
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