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Published on: November 26, 2018
Hemodynamic gain index and risk of ventricular arrhythmias: a prospective cohort study
Setor K Kunutsor1, Sae Young Jae2,3,4, Sudhir Kurl5
1Diabetes Research Centre, University of Leicester, Leicester General Hospital, Leicester, UK.
Insights
Higher hemodynamic gain index (HGI) is linked to a lower risk of ventricular arrhythmias (VAs) in men. This association depends on cardiorespiratory fitness (CRF) levels.
Area of Science:
- Cardiology
- Exercise Physiology
- Preventive Medicine
Background:
- The hemodynamic gain index (HGI) is a novel metric from cardiopulmonary exercise testing (CPX).
- HGI is linked to adverse cardiovascular outcomes, but its association with ventricular arrhythmias (VAs) is not well understood.
Purpose of the Study:
- To investigate the relationship between HGI and the risk of developing VAs in a prospective cohort study.
- To assess if HGI can improve risk prediction for VAs.
Main Methods:
- HGI was calculated using heart rate and systolic blood pressure responses during CPX in 1945 men (aged 42-61).
- Cardiorespiratory fitness (CRF) was measured via respiratory gas exchange analysis.
- Hazard ratios (HRs) for VAs were estimated using Cox proportional hazards models.
Main Results:
- Over a median follow-up of 28.2 years, 75 VAs occurred.
- A higher HGI was associated with a reduced risk of VAs, even after adjusting for risk factors (HR 0.72).
- HGI improved risk prediction beyond established factors, but this effect was attenuated when CRF was included.
Conclusions:
- Elevated HGI is associated with a decreased risk of VAs in middle-aged Caucasian men.
- The protective effect of HGI on VA risk is influenced by cardiorespiratory fitness.
- HGI enhances long-term VA risk prediction, particularly when considered alongside CRF.
Abstract:
Objectives: Hemodynamic gain index (HGI), a novel hemodynamic index obtained from cardiopulmonary exercise testing (CPX), is associated with adverse cardiovascular outcomes. However, its specific relationship with ventricular arrhythmias (VAs) is unknown. We aimed to assess the association of HGI with risk of VAs in a prospective study. Design: Hemodynamic gain index was estimated using heart rate and systolic blood pressure (SBP) responses ascertained in 1945 men aged 42-61 years during CPX from rest to maximum exercise, using the formula: [(Heart ratemax x SBPmax) - (Heart raterest x SBPrest)]/(Heart raterest x SBPrest). Cardiorespiratory fitness (CRF) was measured using respiratory gas exchange analysis. Hazard ratios (HRs) (95% confidence intervals, CIs) were estimated for VAs. Results: Over a median follow-up duration of 28.2 years, 75 cases of VA were recorded. In analysis adjusted for established risk factors, a unit (bpm/mmHg) higher HGI was associated with a decreased risk of VA (HR 0.72, 95% CI: 0.55-0.95). The results remained consistent on adjustment for lifestyle factors and comorbidities (HR 0.72, 95% CI: 0.55-0.93). Comparing the top versus bottom tertiles of HGI, the corresponding adjusted HRs (95% CIs) were 0.51 (0.27-0.96) and 0.52 (0.28-0.94), respectively. The associations were attenuated on addition of CRF to the model. HGI improved risk discrimination beyond established risk factors but not CRF. Conclusions: Higher HGI is associated with a reduced risk of VAs in middle-aged and older Caucasian men, but dependent on CRF levels. Furthermore, HGI improves the prediction of the long-term risk for VAs beyond established risk factors but not CRF.
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