Effect of Sport Activity on Uncomplicated Bicuspid Aortic Valve: Long-Term Longitudinal Echocardiographic Study
Abstract
:1. Background
2. Materials and Methods
2.1. Study Population
2.2. Inclusion and Exclusion Criteria
2.3. Echocardiographic Assessment
3. Results
- XFU = generic parameter at follow-up;
- XT0 = generic parameter at first evaluation
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Hoffman, J.I.; Kaplan, S. The incidence of congenital heart disease. J. Am. Coll. Cardiol. 2002, 39, 1890–1900. [Google Scholar] [CrossRef] [PubMed]
- Stefani, L.; Galanti, G.; Toncelli, L.; Manetti, P.; Vono, M.C.; Rizzo, M.; Maffulli, N. Bicuspid aortic valve in competitive athletes. Br. J. Sports Med. 2008, 42, 31–35, discussion 35. [Google Scholar] [CrossRef] [PubMed]
- Stock, S.; Mohamed, S.A.; Sievers, H.H. Bicuspid aortic valve related aortopathy. Gen. Thorac. Cardiovasc. Surg. 2019, 67, 93–101. [Google Scholar] [CrossRef] [PubMed]
- Isselbacher, E.M.; Preventza, O.; Hamilton Black, J., 3rd; Augoustides, J.G.; Beck, A.W.; Bolen, M.A.; Braverman, A.C.; Bray, B.E.; Brown-Zimmerman, M.M.; Chen, E.P.; et al. 2022 ACC/AHA Guideline for the Diagnosis and Management of Aortic Disease: A Report of the American Heart Association/American College of Cardiology Joint Committee on Clinical Practice Guidelines. Circulation 2022, 146, e334–e482. [Google Scholar] [CrossRef] [PubMed] [PubMed Central]
- Michałowska, I.M.; Hryniewiecki, T.; Kwiatek, P.; Stokłosa, P.; Swoboda-Rydz, U.; Szymański, P. Coronary Artery Variants and Anomalies in Patients with Bicuspid Aortic Valve. J. Thorac. Imaging 2016, 31, 156–162. [Google Scholar] [CrossRef] [PubMed]
- Braverman, A.C.; Harris, K.M.; Kovacs, R.J.; Maron, B.J.; American Heart Association Electrocardiography and Arrhythmias Committee of Council on Clinical Cardiology; Council on Cardiovascular Disease in Young; Council on Cardiovascular and Stroke Nursing; Council on Functional Genomics and Translational Biology; American College of Cardiology. Eligibility and Disqualification Recommendations for Competitive Athletes with Cardiovascular Abnormalities: Task Force 7: Aortic Diseases, Including Marfan Syndrome: A Scientific Statement from the American Heart Association and American College of Cardiology. Circulation 2015, 132, e303–e309. [Google Scholar] [CrossRef] [PubMed]
- Van Hare, G.F.; Ackerman, M.J.; Evangelista, J.A.; Kovacs, R.J.; Myerburg, R.J.; Shafer, K.M.; Warnes, C.A.; Washington, R.L.; American Heart Association Electrocardiography and Arrhythmias Committee of Council on Clinical Cardiology; Council on Cardiovascular Disease in Young; et al. Eligibility and Disqualification Recommendations for Competitive Athletes with Cardiovascular Abnormalities: Task Force 4: Congenital Heart Disease: A Scientific Statement from the American Heart Association and American College of Cardiology. Circulation 2015, 132, e281–e291. [Google Scholar] [CrossRef] [PubMed]
- D’Ascenzi, F.; Valentini, F.; Anselmi, F.; Cavigli, L.; Bandera, F.; Benfari, G.; D’Andrea, A.; Di Salvo, G.; Esposito, R.; Evola, V.; et al. Bicuspid aortic valve and sports: From the echocardiographic evaluation to the eligibility for sports competition. Scand. J. Med. Sci. Sports 2021, 31, 510–520. [Google Scholar] [CrossRef] [PubMed]
- Zeppilli, P.; Bianco, M.; Bria, S.; Palmieri, V. Bicuspid aortic valve: An innocent finding or a potentially life-threatening anomaly whose complications may be elicited by sports activity? J. Cardiovasc. Med. 2006, 7, 282–287. [Google Scholar] [CrossRef] [PubMed]
- Michelena, H.I.; Khanna, A.D.; Mahoney, D.; Margaryan, E.; Topilsky, Y.; Suri, R.M.; Eidem, B.; Edwards, W.D.; Sundt, T.M., 3rd; Enriquez-Sarano, M. Incidence of aortic complications in patients with bicuspid aortic valves. JAMA 2011, 306, 1104–1112. [Google Scholar] [CrossRef] [PubMed]
- Bonow, R.O.; Nishimura, R.A.; Thompson, P.D.; Udelson, J.E.; American Heart Association Electrocardiography and Arrhythmias Committee of Council on Clinical Cardiology; Council on Cardiovascular Disease in Young; Council on Cardiovascular and Stroke Nursing; Council on Functional Genomics and Translational Biology; American College of Cardiology. Eligibility and Disqualification Recommendations for Competitive Athletes with Cardiovascular Abnormalities: Task Force 5: Valvular Heart Disease: A Scientific Statement from the American Heart Association and American College of Cardiology. Circulation 2015, 132, e292–e297. [Google Scholar] [CrossRef] [PubMed]
- Delise, P.; Mos, L.; Sciarra, L.; Basso, C.; Biffi, A.; Cecchi, F.; Colivicchi, F.; Corrado, D.; D’Andrea, A.; Di Cesare, E.; et al. Italian Cardiological Guidelines (COCIS) for Competitive Sport Eligibility in athletes with heart disease: Update 2020. J. Cardiovasc. Med. 2021, 22, 874–891. [Google Scholar] [CrossRef] [PubMed]
- Modica, G.; Sollazzo, F.; Bianco, M.; Cammarano, M.; Pella, R.; Monti, R.; Palmieri, V.; Zeppilli, P. Bicuspid Aortic Valve and Premature Ventricular Beats in Athletes. Int. J. Environ. Res. Public. Health. 2022, 19, 12188. [Google Scholar] [CrossRef] [PubMed] [PubMed Central]
- Boraita, A.; Morales-Acuna, F.; Marina-Breysse, M.; Heras, M.E.; Canda, A.; Fuentes, M.E.; Chacón, A.; Diaz-Gonzalez, L.; Rabadan, M.; Parra Laca, B.; et al. Bicuspid aortic valve behaviour in elite athletes. Eur. Heart J. Cardiovasc. Imaging. 2019, 20, 772–780. [Google Scholar] [CrossRef] [PubMed]
- Craig, C.L.; Marshall, A.L.; Sjöström, M.; Bauman, A.E.; Booth, M.L.; Ainsworth, B.E.; Pratt, M.; Ekelund, U.; Yngve, A.; Sallis, J.F.; et al. International physical activity questionnaire: 12-country reliability and validity. Med. Sci. Sports Exerc. 2003, 35, 1381–1395. [Google Scholar] [CrossRef] [PubMed]
- Michelena, H.I.; Corte, A.D.; Evangelista, A.; Maleszewski, J.J.; Edwards, W.D.; Roman, M.J.; Devereux, R.B.; Fernández, B.; Asch, F.M.; Barker, A.J.; et al. International Consensus Statement on Nomenclature and Classification of the Congenital Bicuspid Aortic Valve and Its Aortopathy, for Clinical, Surgical, Interventional and Research Purposes. Radiol. Cardiothorac. Imaging. 2021, 3, e200496. [Google Scholar] [CrossRef] [PubMed] [PubMed Central]
- Pelliccia, A.; Caselli, S.; Sharma, S.; Basso, C.; Bax, J.J.; Corrado, D.; D’Andrea, A.; D’Ascenzi, F.; Di Paolo, F.M.; Edvardsen, T.; et al. European Association of Preventive Cardiology (EAPC) and European Association of Cardiovascular Imaging (EACVI) joint position statement: Recommendations for the indication and interpretation of cardiovascular imaging in the evaluation of the athlete's heart. Eur. Heart J. 2018, 39, 1949–1969. [Google Scholar] [CrossRef] [PubMed]
- Hinton RBJr Lincoln, J.; Deutsch, G.H.; Osinska, H.; Manning, P.B.; Benson, D.W.; Yutzey, K.E. Extracellular matrix remodeling and organization in developing and diseased aortic valves. Circ. Res. 2006, 98, 1431–1438. [Google Scholar] [CrossRef] [PubMed]
- Spataro, A.; Pelliccia, A.; Rizzo, M.; Biffi, A.; Masazza, G.; Pigozzi, F. The natural course of bicuspid aortic valve in athletes. Int. J. Sports Med. 2008, 29, 81–85. [Google Scholar] [CrossRef] [PubMed]
- D’Andrea, A.; Cocchia, R.; Riegler, L.; Scarafile, R.; Salerno, G.; Gravino, R.; Vriz, O.; Citro, R.; Limongelli, G.; Di Salvo, G.; et al. Aortic root dimensions in elite athletes. Am. J. Cardiol. 2010, 105, 1629–1634. [Google Scholar] [CrossRef] [PubMed]
Parameters | First | Follow-Up | p-Value |
---|---|---|---|
Weight (kg) | 69.6 ± 10.5 | 74.5 ± 10.4 | <0.001 |
Height (cm) | 177.0 ± 7.55 | 177.0 ± 8.3 | 0.794 |
BSA (m2) | 1.85 ± 0.16 | 1.88 ± 0.15 | 0.233 |
BMI | 22.6 ± 2.2 | 22.8 ± 2.3 | 0.573 |
Untrained at Follow-Up | |||
Parameters (Diameters or Velocities) | Mean ± SD (First Eval.) (mm or m/s) | Mean ± SD (Follow-Up) | p-Value |
AOINS | 22.71 ± 3.39 | 23.74 ± 2.65 | 0.217 |
AOVS | 30.88 ± 6.6 | 33.4 ± 6.91 | 0.015 |
AOAN | 21.9 ± 4.27 | 23.41 ± 3.34 | 0.041 |
AOSTJ | 25 ± 4.26 | 26.12 ± 4.27 | 0.082 |
PAA | 29.76 ± 4.91 | 32.16 ± 4.74 | 0.005 |
AA | 22.8 ± 4.29 | 24.7 ± 4.21 | 0.004 |
TAOPV | 1.71 ± 0.46 | 1.77 ± 0.42 | 0.416 |
DAOPV | 1.57 ± 0.26 | 1.51 ± 0.27 | 0.351 |
Trained at Follow-Up | |||
Parameters (Diameters or Velocities) | Mean ± SD (First Eval.) (mm or m/s) | Mean ± SD (Follow-Up) | p-Value |
AOINS | 22.4 ± 3 | 24.59 ± 5.1 | 0.065 |
AOVS | 30.82 ± 4.75 | 33.1 ± 4.1 | ˂0.001 |
AOAN | 22.9 ± 3 | 24.71 ± 4.11 | 0.023 |
AOSTJ | 25.22 ± 3.67 | 26.58 ± 4.13 | 0.041 |
PAA | 30.86 ± 5.78 | 32.23 ± 6.3 | 0.011 |
AA | 23.25 ± 3.81 | 24.32 ± 4.32 | 0.033 |
TAOPV | 1.5 ± 0.3 | 1.4 ± 0.21 | 0.016 |
DAOPV | 1.62 ± 0.35 | 1.78 ± 3.96 | 0.035 |
Parameters | UFU–Variation Rate, % (Mean ± SD) | TFU–Variation Rate, % (Mean ± SD) | p-Value |
---|---|---|---|
AOINS | 2.48 ± 12.46 | 7.75 ± 28.03 | 0.502 |
AOVS | 1.76 ± 8.44 | 2.48 ± 8.31 | 0.776 |
AOAN | 0.26 ± 11.19 | 4.75 ± 21.51 | 0.419 |
AOSTJ | 2.14 ± 9.0 | 5.03 ± 12.93 | 0.466 |
PAA | 5.02 ± 11.67 | 5.35 ± 11.22 | 0.926 |
AA | 4.39 ± 10.36 | 2.01 ± 11.04 | 0.482 |
LVEDd | 10.53 ± 5.27 | 20.88 ± 3.38 | 0.153 |
LVESd | 2.08 ± 10.76 | 2.98 ± 14.0 | 0.199 |
IVSd | 6.18 ± 18.5 | 1.32 ± 12.76 | 0.110 |
LVPWd | 6.99 ± 15.3 | 1.93 ± 17.82 | 0.088 |
EF | −0.13 ± 8.68 | 6.12 ± 14.14 | 0.111 |
LAd | 0.17 ± 14.01 | 6.45 ± 16.56 | 0.190 |
RVd | 7.02 ± 16.43 | −0.9 ± 14.65 | 0.133 |
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Bianco, M.; Sollazzo, F.; Modica, G.; Zovatto, I.C.; Di Mario, R.; Monti, R.; Cammarano, M.; Palmieri, V.; Zeppilli, P. Effect of Sport Activity on Uncomplicated Bicuspid Aortic Valve: Long-Term Longitudinal Echocardiographic Study. J. Cardiovasc. Dev. Dis. 2024, 11, 285. https://doi.org/10.3390/jcdd11090285
Bianco M, Sollazzo F, Modica G, Zovatto IC, Di Mario R, Monti R, Cammarano M, Palmieri V, Zeppilli P. Effect of Sport Activity on Uncomplicated Bicuspid Aortic Valve: Long-Term Longitudinal Echocardiographic Study. Journal of Cardiovascular Development and Disease. 2024; 11(9):285. https://doi.org/10.3390/jcdd11090285
Chicago/Turabian StyleBianco, Massimiliano, Fabrizio Sollazzo, Gloria Modica, Isabella Carlotta Zovatto, Rachele Di Mario, Riccardo Monti, Michela Cammarano, Vincenzo Palmieri, and Paolo Zeppilli. 2024. "Effect of Sport Activity on Uncomplicated Bicuspid Aortic Valve: Long-Term Longitudinal Echocardiographic Study" Journal of Cardiovascular Development and Disease 11, no. 9: 285. https://doi.org/10.3390/jcdd11090285
APA StyleBianco, M., Sollazzo, F., Modica, G., Zovatto, I. C., Di Mario, R., Monti, R., Cammarano, M., Palmieri, V., & Zeppilli, P. (2024). Effect of Sport Activity on Uncomplicated Bicuspid Aortic Valve: Long-Term Longitudinal Echocardiographic Study. Journal of Cardiovascular Development and Disease, 11(9), 285. https://doi.org/10.3390/jcdd11090285