Mark Joseph Cartoski, MD

Cardiologist

Nemours Children's Hospital, Delaware 1600 Rockland Road Wilmington, DE 19803

Education

  • Fellowship - Johns Hopkins University School of Medicine, Cardiovascular Imaging, 2018
  • Fellowship - Johns Hopkins University School of Medicine, Pediatric Cardiology, 2017
  • Residency - Children's Hospital of The King's Daughters, General Pediatrics, 2013
  • MD - Virginia Commonwealth University, Medical School, 2010

Board Certifications

  • American Board of Pediatrics/General Pediatrics
  • American Board of Pediatrics/Pediatric Cardiology

  • CMR Findings in the Long-Term Outcomes After Multisystem Inflammatory Syndrome in Children (MUSIC) Study; Circulation Cardiovascular Imaging; (2025).

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  • Methylated Arginine Metabolites as Biomarkers for Clinical Status and Response to Type 5 Phosphodiesterase Inhibition in Patients With Fontan Circulation; Journal of the American Heart Association; (2025).

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  • Revisiting the Effect of Udenafil on Exercise Performance in Patients With Fontan Circulation: Results of a Post Hoc Analysis of the FUEL Trial; Journal of the American Heart Association; (2025).

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  • Efficacy and safety of coronary computed tomography angiography in diagnosing coronary lesions in children; Cardiology in the Young; (2024).

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  • Society for Cardiovascular Magnetic Resonance 2023 Cases of SCMR case series; Journal of Cardiovascular Magnetic Resonance; (2024).

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  • The Effect of Udenafil on Heart Rate and Blood Pressure in Adolescents With the Fontan Circulation; American Journal of Cardiology; (2024).

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  • Cardiac Magnetic Resonance Imaging to Determine Single Ventricle Function in a Pediatric Population is Feasible in a Large Trial Setting: Experience from the Single Ventricle Reconstruction Trial Longitudinal Follow up; Pediatric Cardiology; (2023).

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  • Role of myocardial deformation imaging in transfusion-dependent thalassemia—Correlation with severity of myocardial siderosis; Progress in Pediatric Cardiology; (2023).

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  • The Fontan Udenafil Exercise Longitudinal Trial: Subgroup Analysis; Pediatric Cardiology; (2023).

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  • Personalized computational heart models with T1-mapped fibrotic remodeling predict sudden death risk in patients with hypertrophic cardiomyopathy; eLife; (2022).

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  • Role of Myocardial Deformation Imaging in Transfusion-Dependent Thalassemia—Correlation with Severity of Myocardial Siderosis; SSRN; (2022).

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  • Role of Myocardial Deformation Imaging in Transfusion-Dependent Thalassemia—Correlation with Severity of Myocardial Siderosis; SSRN; (2022).

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  • Personalized computational heart models with T1-mapped fibrotic remodeling predict risk of sudden death risk in patients with hypertrophic cardiomyopathy; medRxiv; (2021).

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  • Cardiac magnetic resonance imaging and computed tomography for the pediatric cardiologist; Progress in Pediatric Cardiology; (2020).

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  • Ventricular arrhythmia risk prediction in repaired Tetralogy of Fallot using personalized computational cardiac models; Heart Rhythm; (2020).

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  • Computational Identification of Ventricular Arrhythmia Risk in Pediatric Myocarditis; Pediatric Cardiology; (2019).

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  • Appropriate Use Criteria for paediatric echocardiography in an outpatient practice: A validation study; Cardiology in the Young; (2018).

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  • Classification of the dysmorphology of pectus excavatum; Journal of Pediatric Surgery; (2006).

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