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International Journal of Sports Medicine|October 9, 2001
Blood volume and hemoglobin mass in elite athletes of different disciplinesK Heinicke, B Wolfarth, P Winchenbach, et al.Scandinavian Journal of Medicine & Science in Sports|December 11, 2007
Endothelial nitric oxide synthase gene polymorphism and elite endurance athlete status: the Genathlete studyB Wolfarth, T Rankinen, S Mühlbauer, et al.Scandinavian Journal of Medicine & Science in Sports|June 12, 2010
Single nucleotide polymorphisms in the myostatin (MSTN) and muscle creatine kinase (CKM) genes are not associated with elite endurance performanceF Döring, S Onur, C Kürbitz, et al.Versicherungsmedizin|April 6, 2002
[Freiburg intervention program for ambulatory therapy of obesity in childhood (FITOC)]U Korsten-Reck, C Rudloff, R Kayser, et al.Medicine and Science in Sports and Exercise|October 20, 2000
A polymorphism in the alpha2a-adrenoceptor gene and endurance athlete statusB Wolfarth, M A Rivera, J M Oppert, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|May 8, 2000
No association between the angiotensin-converting enzyme ID polymorphism and elite endurance athlete statusT Rankinen, B Wolfarth, J A Simoneau, et al.Medicine and Science in Sports and Exercise|December 31, 1997
Muscle-specific creatine kinase gene polymorphisms in elite endurance athletes and sedentary controlsM A Rivera, F T Dionne, B Wolfarth, et al.Pediatric Cardiology|June 3, 2021
The Fontan and the Sea: First-in-Man Data on Swimming and Diving Physiology in Fontan PatientsC Paech, R A Gebauer, M Weidenbach, et al.Oncogene|March 7, 1996
Evidence for a novel tumor suppressor gene on chromosome 15 associated with progression to a metastatic stage in breast cancerW Wick, I Petersen, R K Schmutzler, et al.The International Journal of Cardiovascular Imaging|May 21, 2021
Cardiac MRI findings to differentiate athlete's heart from hypertrophic (HCM), arrhythmogenic right ventricular (ARVC) and dilated (DCM) cardiomyopathyJ Kübler, C Burgstahler, J M Brendel, et al.Pageof 3