1. Jandera V, Hudson DA, de Wet PM, et al. Cooling the burn wound: evaluation of different modalites. Burns 2000; 26(3): 265–270, doi: 10.1016/s0305-4179(99)00133-3.
2.
Cho YS, Choi YH. Comparison of three cooling methods for burn patients: A randomized clinical trial. Burns 2017; 43(3): 502–508, doi: 10.1016/j.burns.2016.09.010.
3.
Holzer-Geissler JCJ, Smolle C, Kamolz LP. Prolonged cooling of burn wounds leads to significant tissue survival. Burns 2021; 47(8): 1937–1938, doi: 10.1016/j.burns.2021.07.027.
4.
Lord JM, Midwinter MJ, Chen YF, et al. The systemic immune response to trauma: an overview of pathophysiology and treatment. Lancet 2014; 384(9952): 1455–1465, doi: 10.1016/S0140-6736(14)60687-5.
5.
Laggner M, Lingitz MT, Copic D, et al. Severity of thermal burn injury is associated with systemic neutrophil activation. Sci Rep 2022; 12(1): 1654, doi: 10.1038/s41598-022-05768-w.
6.
Hu L, Wang B, Hong Y, et al. Admission Neutrophil-Lymphocyte Ratio (NLR) Predicts Survival in Patients with Extensive Burns. Burns 2021; 47(3): 594–600, doi: 10.1016/j.burns.2020.07.028.
7.
Qiu L, Jin X, Wang JJ, et al. Plasma Neutrophil-to-Lymphocyte Ratio on the Third Day Postburn is Associated with 90-Day Mortality Among Patients with Burns over 30% of Total Body Surface Area in Two Chinese Burns Centers. J Inflamm Res 2021; 24; 14: 519–526, doi: 10.2147/JIR.S294543.
8.
Fuss J, Voloboyeva A, Poliovyj V. Prognostic value of using neutrophil-lymphocyte ratio in patients with burn injury for the diagnosis of sepsis and bacteraemia. Pol Przegl Chir 2018; 15; 90(5): 13–16, doi: 10.5604/01.3001.0012.0971.
9.
Kim HY, Kong YG, Park JH, et al. Acute kidney injury after burn surgery: Preoperative neutrophil/lymphocyte ratio as a predictive factor. Acta Anaesthesiol Scand 2019; 63(2): 240–247, doi: 10.1111/aas.13255.
10.
Angulo M, Moreno L, Aramendi I, et al. Complete Blood Count and Derived Indices: Evolution Pattern and Prognostic Value in Adult Burned Patients. J Burn Care Res 2020; 41(6): 1260–1266, doi: 10.1093/jbcr/iraa091.
11.
Gunduz M, Ciftci I, Yasti AC, et al. Red cell distribution width and neutrophil-to-lymphocyte ratio as a predictive factor in treatment of pediatric patients with burns. Int J Burns Trauma 2020; 10(4): 101–106.
12.
Thakkar RK, Diltz Z, Drews JD, et al. Abnormal lymphocyte response after pediatric thermal injury is associated with adverse outcomes. J Surg Res 2018; 228: 221–227, doi: 10.1016/j.jss.2018.03.039.
13.
Harish V, Tiwari N, Fisher OM, et al. First aid improves clinical outcomes in burn injuries: Evidence from a cohort study of 4918 patients. Burns 2019; 45(2): 433–439, doi: 10.1016/j.burns.2018.09.024.
14.
Harish V, Li Z, Maitz PKM. First aid is associated with improved outcomes in large body surface area burns. Burns 2019; 45(8): 1743–1748, doi: 10.1016/j.burns.2019.05.006.
15.
Nguyen NL, Gun RT, Sparnon AL, et al. The importance of immediate cooling--a case series of childhood burns in Vietnam. Burns 2002; 28(2): 173–176, doi: 10.1016/s0305-4179(01)00094-8.
16.
McAlister P, Hagan G, Lowry C, et al. Fifteen-minute consultation: Management of paediatric minor burns. Arch Dis Child Educ Pract Ed 2023; 108(4): 242–247, doi: 10.1136/archdischild-2021-323229.
17.
Allorto NL. Primary management of burn injuries: Balancing best practice with pragmatism. S Afr Fam Pract 2020; 62(1): e1–e4, doi: 10.4102/safp.v62i1.5202.
18.
McLure M, Macneil F, Wood FM, et al. A Rapid Review of Burns First Aid Guidelines: Is There Consistency Across International Guidelines? Cureus 2021; 13(6): e15779, doi: 10.7759/cureus.15779.
19.
Taira BR, Singer AJ, Cassara G, et al. Rates of compliance with first aid recommendations in burn patients. J Burn Care Res 2010; 31(1): 121–124, doi: 10.1097/BCR.0b013e3181cb8cd9.
20.
Kilshaw AD, Jivan S. Smartphone apps on burns first aid: A review of the advice. Burns 2021; 47(1): 171–174, doi: 10.1016/j.burns.2020.04.022.