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For: Byers SL, Ficicioglu C. Infant with cardiomyopathy: When to suspect inborn errors of metabolism? World J Cardiol 2014; 6(11): 1149-1155 [PMID: 25429327 DOI: 10.4330/wjc.v6.i11.1149]
URL: https://www.wjgnet.com/1949-8462/full/v6/i11/1149.htm
Number Citing Articles
1
Sukhes Mukherjee, Suman Kumar Ray. Inborn Errors of Metabolism Screening in Neonates: Current Perspective with Diagnosis and TherapyCurrent Pediatric Reviews 2022; 18(4): 274 doi: 10.2174/1573396318666220404194452
2
Elizabeth H Dineen, Ali Torkamani, Evan D Muse. Kickboxing a cardiomyopathy: mitochondrial sequencing provides answer for young athlete and her familyBMJ Case Reports 2021; 14(1): e237592 doi: 10.1136/bcr-2020-237592
3
V. S. Sukhorukov, T. I. Baranich, A. V. Egorova, E. N. Fedorova, K. A. Skvortsova, D. A. Kharlamov, A. I. Krapivkin. Mitochondrial dynamics and the significance of its disturbances in the development of childhood diseases. Part II. Cardiological and endocrinological aspectsRossiyskiy Vestnik Perinatologii i Pediatrii (Russian Bulletin of Perinatology and Pediatrics) 2024; 69(2): 12 doi: 10.21508/1027-4065-2024-69-2-12-18
4
Areeg El-Gharbawy, Amy Goldstein. Mitochondrial Fatty Acid Oxidation Disorders Associated with Cardiac DiseaseCurrent Pathobiology Reports 2017; 5(3): 259 doi: 10.1007/s40139-017-0148-4
5
Kayvan Mirnia, Maryam Saeedi, Razieh Sangsari, Kimia Kazemzadeh. A five‐day‐old child with lipid hemihypertrophy: A case reportClinical Case Reports 2024; 12(2) doi: 10.1002/ccr3.8476
6
Areeg El-Gharbawy, Jerry Vockley. Inborn Errors of Metabolism with MyopathyPediatric Clinics of North America 2018; 65(2): 317 doi: 10.1016/j.pcl.2017.11.006
7
Mario Motta, Mohammad Mozibur Rahman, Gayatri Athalye-Jape, Monika Kaushal. Organic Acidemias: Clinical Presentation in NeonatesNewborn 2024; 2(4): 263 doi: 10.5005/jp-journals-11002-0080
8
Andreia Duarte Constante, Susana Martins Abreu, Conceição Trigo. Mitochondrial cardiomyopathy: a puzzle for the final diagnosisCardiology in the Young 2024; 34(6): 1393 doi: 10.1017/S1047951124025095
9
Elaine Murphy, Oliver Watkinson. Cardiovascular Genetics and Genomics2018; : 189 doi: 10.1007/978-3-319-66114-8_7
10
Stefana Maria Moisa, Ingrith Crenguta Miron, Elena Tarca, Laura Trandafir, Vasile Valeriu Lupu, Ancuta Lupu, Tania Elena Rusu. Non-Cardiac Cause of Death in Selected Group Children with Cardiac Pathology: A Retrospective Single Institute StudyChildren 2022; 9(3): 335 doi: 10.3390/children9030335
11
Teresa M. Lee, Daphne T. Hsu, Paul Kantor, Jeffrey A. Towbin, Stephanie M. Ware, Steven D. Colan, Wendy K. Chung, John L. Jefferies, Joseph W. Rossano, Chesney D. Castleberry, Linda J. Addonizio, Ashwin K. Lal, Jacqueline M. Lamour, Erin M. Miller, Philip T. Thrush, Jason D. Czachor, Hiedy Razoky, Ashley Hill, Steven E. Lipshultz. Pediatric CardiomyopathiesCirculation Research 2017; 121(7): 855 doi: 10.1161/CIRCRESAHA.116.309386
12
Nerea Jimenez-Tellez, Steven C Greenway. Cellular models for human cardiomyopathy: What is the best option?World Journal of Cardiology 2019; 11(10): 221-235 doi: 10.4330/wjc.v11.i10.221
13
Catherine Brunel-Guitton, Alina Levtova, Florin Sasarman. Mitochondrial Diseases and CardiomyopathiesCanadian Journal of Cardiology 2015; 31(11): 1360 doi: 10.1016/j.cjca.2015.08.017
14
Carlos R. Ferreira, Nenad Blau. Clinical and biochemical footprints of inherited metabolic diseases. IV. Metabolic cardiovascular diseaseMolecular Genetics and Metabolism 2021; 132(2): 112 doi: 10.1016/j.ymgme.2020.12.290
15
A. El-Gharbawy, J. Vockley. Cardioskeletal Myopathies in Children and Young Adults2017; : 265 doi: 10.1016/B978-0-12-800040-3.00014-5
16
Manish Bansal. Myocardial Disorders in the NeonateNeoReviews 2018; 19(7): e403 doi: 10.1542/neo.19-7-e403
17
Stephanie M. Ware. Evaluation of genetic causes of cardiomyopathy in childhoodCardiology in the Young 2015; 25(S2): 43 doi: 10.1017/S1047951115000827
18
Hsiu-Fen Lee, Ching-Shiang Chi, Chi-Ren Tsai. Early cardiac involvement in an infantile Sandhoff disease case with novel mutationsBrain and Development 2017; 39(2): 171 doi: 10.1016/j.braindev.2016.09.006
19
Ayelén M. Santamans, Valle Montalvo-Romeral, Alfonso Mora, Juan Antonio Lopez, Francisco González-Romero, Daniel Jimenez-Blasco, Elena Rodríguez, Aránzazu Pintor-Chocano, Cristina Casanueva-Benítez, Rebeca Acín-Pérez, Luis Leiva-Vega, Jordi Duran, Joan J. Guinovart, Jesús Jiménez-Borreguero, José Antonio Enríquez, María Villlalba-Orero, Juan P. Bolaños, Patricia Aspichueta, Jesús Vázquez, Bárbara González-Terán, Guadalupe Sabio, Rebecca Haeusler. p38γ and p38δ regulate postnatal cardiac metabolism through glycogen synthase 1PLOS Biology 2021; 19(11): e3001447 doi: 10.1371/journal.pbio.3001447
20
Beth Ann Johnson, Jennifer Shepherd, Shazia Bhombal, Noorjahan Ali, Chloe Joynt. Special considerations for the stabilization and resuscitation of patients with cardiac disease in the Neonatal Intensive Care UnitSeminars in Perinatology 2024; 48(8): 151989 doi: 10.1016/j.semperi.2024.151989
21
Tudor-Alexandru Popoiu, Jan Dudek, Christoph Maack, Edoardo Bertero. Cardiac Involvement in Mitochondrial DisordersCurrent Heart Failure Reports 2023; 20(1): 76 doi: 10.1007/s11897-023-00592-3
22
Anita M. Chanana, June-Wha Rhee, Joseph C. Wu. Human-induced pluripotent stem cell approaches to model inborn and acquired metabolic heart diseasesCurrent Opinion in Cardiology 2016; 31(3): 266 doi: 10.1097/HCO.0000000000000277
23
Margretta Reed Seashore. Rosenberg's Molecular and Genetic Basis of Neurological and Psychiatric Disease2020; : 785 doi: 10.1016/B978-0-12-813955-4.00057-X