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Left Atrial Myopathy is Associated With Exercise Incapacity and Ventilatory Inefficiency in Hypertrophic
Thomas Zegkos1, Vasileios Kamperidis1, Dimitris Ntelios1
1Department of Cardiology, AHEPA University Hospital, Aristotle University, Thessaloniki, Greece.
Insights
Left atrial myopathy, measured by LA strain, is linked to reduced exercise capacity and ventilatory inefficiency in hypertrophic cardiomyopathy (HCM) patients. LA reservoir strain is a key predictor for these exercise limitations.
Area of Science:
- Cardiology
- Cardiovascular Research
- Biomedical Engineering
Background:
- Left atrial (LA) myopathy is a known factor in hypertrophic cardiomyopathy (HCM).
- Limited data exist on the association between LA myopathy and exercise limitations in HCM patients.
- This study investigates the link between LA myopathy and exercise incapacity and ventilatory inefficiency.
Purpose of the Study:
- To explore the association between left atrial myopathy, assessed by echocardiography LA strain, and exercise capacity and ventilatory efficiency in HCM patients.
- To identify predictors of exercise incapacity and ventilatory inefficiency in HCM.
- To determine the role of LA reservoir strain in exercise limitations.
Main Methods:
- 241 HCM patients in sinus rhythm underwent cardiopulmonary exercise testing (CPET) and echocardiography.
- Exercise incapacity (%peakVO2 <80%) and ventilatory inefficiency (VE/VCO2 slope >34) were assessed via CPET.
- Left atrial myopathy was evaluated using LA reservoir, conduit, and booster strain via speckle-tracking echocardiography.
Main Results:
- All LA strain parameters predicted exercise capacity and ventilatory efficiency.
- LA reservoir strain showed the strongest correlation with %peakVO2 and VE/VCO2 slope.
- LA reservoir strain was an independent predictor of both exercise incapacity and ventilatory inefficiency, with specific cut-off values identified.
Conclusions:
- Left atrial myopathy, indicated by LA strain, is associated with exercise incapacity and ventilatory inefficiency in HCM.
- Left atrial reservoir strain is a significant independent predictor common to both exercise capacity and ventilatory efficiency in HCM patients.
Background:
Left atrial (LA) myopathy is an established component of hypertrophic cardiomyopathy (HCM); however, the data about its association with exercise incapacity or ventilatory inefficiency that may be seen in HCM patients are limited. This study aimed to explore the association between LA myopathy, evaluated by echocardiography LA strain, and exercise capacity and ventilatory efficiency, evaluated by cardiopulmonary exercise testing (CPET), in HCM patients.
Methods:
This study included 241 consecutive HCM patients (aged 51.2±15.7 years 67.2% male) in sinus rhythm who underwent CPET and transthoracic echocardiography at the same visit. Exercise incapacity (maximal/predicted oxygen consumption [%peakVO2] <80%) and ventilatory inefficiency (ventilation/carbon dioxide output [VE/VCO2] slope >34) were assessed by CPET. Left atrial myopathy was examined by speckle-tracking myocardial deformation parameters: LA reservoir, conduit and booster strain.
Results:
All three LA strain values were univariate predictors of exercise capacity and ventilatory efficiency. Among them, LA reservoir strain had the higher r correlation coefficient for predicting both %peakVO2 and VE/VCO2 slope. Left atrial reservoir strain, presence of angina and family history of HCM were independent predictors of exercise capacity. Left atrial reservoir strain, male gender and non-sustained ventricular tachycardia were independent predictors of ventilatory efficiency. Left atrial reservoir strain was a significant predictor of %peakVO2<80% with an optimal cut-off value of 27% (sensitivity 87% and specificity 31%) and VE/VCO2>34 with an optimal cut-off value of 18% (sensitivity 71% and specificity 83%).
Conclusion:
Left atrial myopathy, as reflected by the LA strain values, was associated with exercise incapacity and ventilatory inefficiency in HCM individuals. Left atrial reservoir strain was the only common independent predictor of %peakVO2 and VE/VCO2 slope.
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