Acute Surgical Management of the Burn Patient

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Outcome measures in burn care: Is mortality dead?.

Burns. 2004; 30: 761-771

A new concept in the early excision and immediate grafting of burns.

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Burn surgery.

Clin Plast Surg. 2007; 34: 697-715

The skin and subcutaneous tissue.

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Moderate glycemic control safe in critically ill adult burn patients: a 15 year cohort study.

Burns. 2016; 42: 63-70

Preoperative evaluation.

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Estimation of blood loss during adult burn surgery.

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A prospective study of blood loss with excisional therapy in pediatric burn patients.

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A formula to calculate blood cross-match requirements for early burn surgery in children.

Burns. 1995; 21: 371-373Sterling J.P. Heimbach D.M.

Hemostasis in burn surgery—A review.

Burns. 2011; 37: 559-565Welling H. Ostrowski S.R. Stensballe J. et al.

Management of bleeding in major burn surgery.

Burns. 2019; 45: 755-762Rajagopalan S. Mascha E. Na J. et al.

The effects of mild perioperative hypothermia on blood loss and transfusion requirement.

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Maintenance of normothermia during burn surgery with an intravascular temperature control system: a non-randomised controlled trial.

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Daily enteral feeding practice on the ICU: attainment of goals and interfering factors.

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Intraoperative feeding improves calorie and protein delivery in acute burn patients.

J Burn Care Res. 2017; 38: 299-303Carmichael H. Joyce S. Smith T. et al.

Safety and efficacy of intraoperative gastric feeding during burn surgery.

Burns. 2019; 45: 1089-1093Grunzweig K.A. Son J. Kumar A.R.

Regional anesthetic blocks for donor site pain in burn patients: a meta-analysis on efficacy, outcomes, and cost.

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Perioperative anesthesia management of the burn patient.

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Application of hydrosurgery for burn wound debridement: an 8-year cohort analysis.

Burns. 2019; 45: 88-96Ziolkowski N. Rogers A.D. Xiong W. et al.

The impact of operative time and hypothermia in acute burn surgery.

Burns. 2017; 43: 1673-1681

Operative management of burns.

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Skin grafts.

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Cultured epithelial autograft (CEA) in burn treatment: three decades later.

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Cultured epithelial autograft: five years of clinical experience with twenty-eight patients.

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Demonstration of the safety and effectiveness of the RECELL System combined with split-thickness meshed autografts for the reduction of donor skin to treat mixed-depth burn injuries.

Burns. 2019; 45: 772-782Molnar J.A. Walker N. Steele T.N. et al.

Initial experience with autologous skin cell suspension for treatment of deep partial-thickness facial burns.

J Burn Care Res. 2020; 41: 1045-1051Damaraju S.M. Mintz B.R. Park J.G. et al.

Skin substitutes with noncultured autologous skin cell suspension heal porcine full-thickness wounds in a one-stage procedure.

Int Wound J. 2022; 19: 188-201Yu N. Liu R. Yu P. et al.

Repigmentation of nipple-areola complex after ReCell® treatment on breast vitiligo.

J Cosmet Dermatol. 2022; 21: 2530-2534Busch K.H. Bender R. Walezko N. et al.

Combination of medical needling and non-cultured autologous skin cell transplantation (ReNovaCell) for repigmentation of hypopigmented burn scars.

Burns. 2016; 42: 1556-1566Hu Z. Guo D. Liu P. et al.

Randomized clinical trial of autologous skin cell suspension for accelerating re-epithelialization of split-thickness donor sites.

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The role of skin substitutes in acute burn and reconstructive burn surgery: an updated comprehensive review.

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Dermal regenerative matrix use in burn patients: a systematic review.

J Plast Reconstr Aesthet Surg. 2019; 72: 1741-1751Demircan M. Cicek T. Yetis M.I.

Preliminary results in single-step wound closure procedure of full-thickness facial burns in children by using the collagen-elastin matrix and review of pediatric facial burns.

Burns. 2015; 41: 1268-1274Gibson A.L. Holmes 4th, J.H. Shupp J.W. et al.

A phase 3, open-label, controlled, randomized, multicenter trial evaluating the efficacy and safety of StrataGraft® construct in patients with deep partial-thickness thermal burns.

Burns. 2021; 47: 1024-1037

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