Azami M, Jasemi S, Khalifpur Y, Badfar G. Causes of mortality in a neonatal intensive care unit in Iran: one year data. Med J Indones. 2020; 29(2), 143–148.
2 Vento G, Ventura ML, Pastorino R, van Kaam AH, Carnielli V, Cools F, et al. Lung recruitment before surfactant administration in extremely preterm neonates with respiratory distress syndrome (IN-REC-SUR-E): a randomised, unblinded, controlled trial. Lancet Respir Med. 2021;9(2):159-166.
3 Joseph S, Kumar S, Ahamed M Z, Lakshmi S. Cardiac troponin-T as a marker of myocardial dysfunction in term neonates with perinatal asphyxia. Indian J Pediatr. 2018;85(10):877-884.
4 Neumann JT, Twerenbold R, Ojeda F, Sörensen NA, Chapman AR, Shah ASV, et al; COMPASS-MI Study Group. Application of high-sensitivity troponin in suspected myocardial infarction. N Engl J Med. 2019;380(26):2529-2540. Erratum in: N Engl J Med. 2022;387(18):1724.
5 Karimi P, Mahmudi L, Azami M, Badfar G. Mortality in neonatal intensive care units in Iran: a systematic review and meta-analysis. Iran J Neonatol. 2019;10(3): 70–80.
6 Hegazy LAG, Mossad HN, Wahba NS, Ishak SR. Troponin T level in children with acute chest diseases and respiratory distress. Egypt J Chest Dis Tuberc. 2020;69(3):585-589.
7 Tanasan A, Eghbalian F, Sabzehei MK, Haghi AR. The relationship between serum levels of troponin I and myocardial function in neonates under mechanical ventilation. Iran J Pediatr. 2020; 30(1).
8 Ramanathan R, Biniwale M, Sekar K, Hanna N, Golombek S, Bhatia J, et al. Synthetic surfactant CHF5633 compared with poractant alfa in the treatment of neonatal respiratory distress syndrome: a multicenter, double-blind, randomized, controlled clinical trial. J Pediatr. 2020; 225:90-96.e1.
9 Cloherty JP, Eichenwald EC, Stark AR, editors. Manual of neonatal care. Lippincott Williams & Wilkins; 2008.
10 Siddiq A, Krisnadi SR, Effendi JS. The differences of cord blood troponin I (TnI) level between normal and asphyxiated infants and its correlation with apgar score. Open J Obstet Gynecol. 2014;4(15):954.
11 Lee S-T, Shen C-M, Nar M, Kua K-E, Lin L-H. CK, CK-MB, Troponin-I Levels in Perinatal Asphyxiated Infants during the First Four Hours of Life: A Retrospective Study. Clin Neonatol. 2006;13(2):51–54.
12 Gouda MH, Hammad BS, Amen MA. Short-term prognostic value of serum cardiac troponin I levels in neonates with perinatal asphyxia. Alexandria J Pediatr. 2017;30(3):108-119.
13 Lee IC, Yu CS, Wong SH, Lue KH. Troponin I levels in neonatal hypoxic-ischemic encephalopathy are related to cardiopulmonary comorbidity and neurodevelopmental outcomes. J Clin Med. 2021;10(17):4010.
14 Issa A, Abdulkadir MB, Ibraheem RM, Ibrahim OR, Bello SO, Suberu H, et al. Relationships between troponin I and hypoxic–ischemic encephalopathy among newborn babies. J Clin Neonatol. 2021;10(3):187-191.
15 Sayeed MA, Dipti DI, AynalHoque M, Hussain M. Cardiac functional status in asphyxiated neonates: A measurement of serum troponin-i and echocardiographic changes.
16 Michniewicz B, Szpecht D, Sowińska A, Sibiak R, Szymankiewicz M, Gadzinowski J. Biomarkers in newborns with hypoxic-ischemic encephalopathy treated with therapeutic hypothermia. Childs Nerv Syst. 2020;36(12):2981-2988.
17 Trevisanuto D, Picco G, Golin R, Doglioni N, Altinier S, Zaninotto M, et al. Cardiac troponin I in asphyxiated neonates. Biol Neonate. 2006; 89(3):190-193.
18 Mahmoud AT, El-Bassuny M, Shebl A. Cardiac troponin I as an early predictor of perinatal asphyxia. Menoufia Med J. 2013;26(2):145-50.
19 Jiang L, Li Y, Zhang Z, Lin L, Liu X. Use of high-sensitivity cardiac troponin I levels for early diagnosis of myocardial injury after neonatal asphyxia. J Int Med Res 2019;47(7):3234–3242.
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