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Review Article

Burn Wound Coverings

Pages 1-35 | Published online: 11 Jul 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

Hsien-Tang Chiu, Ray-Lun Chen, Pei-Yi Wu, Tzong-Yiing Chiang & Su-Chen Chen. (2007) A Study on the Effects of the Degree of Deacetylation of Chitosan Films on Physical and Antibacterial Properties. Polymer-Plastics Technology and Engineering 46:12, pages 1121-1127.
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K.Z. Gumargalieva, G.E. Zaikov, Yu.V. Moiseev & T.T. Daurova. (1996) Physico-Chemical Criteria for Estimating the Efficiency of Burn Dressings. International Journal of Polymeric Materials and Polymeric Biomaterials 33:3-4, pages 199-233.
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E.M. Abdel-Bary, A.M. Dessouki, EmanM. El Nesr & A.A. El Miligy. (1995) Radiation-Induced Grafting of Binary Monomer (Acrylic Acid/2-Hydroxyethyl Methacrylate) onto LDPE and PP Films. Polymer-Plastics Technology and Engineering 34:3, pages 383-403.
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Avinash Nangia & Cheung T. Hung. (1991) Analysis of Preparation of Dextran Hydrogel Membranes as a Wound Dressing. Drug Development and Industrial Pharmacy 17:12, pages 1609-1624.
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Avinash Nangia, Frederick Lam & Cheung T. Hung. (1990) Formulation Optimization of a Hydrocolloid Dressing. Drug Development and Industrial Pharmacy 16:14, pages 2109-2123.
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Marcel F. Jonkman, Izaäk Molenaar, Paul Nieuwenhuis & Henk J. Klasen. (1989) Evaporative Water Loss and Epidermis Regeneration in Partial-Thickness Wounds Dressed with a Fluid-Retaining Versus a Clot-Inducing Wound Covering in Guinea Pigs. Scandinavian Journal of Plastic and Reconstructive Surgery 23:1, pages 29-34.
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Articles from other publishers (42)

Yuan Zhang, Wanying He, Shuhan Zhang, Xingli Hu, Siming Sun, Hongtao Gao, Jie Kong, Hongxiang Liu, Haiyan Li, Xin Liu & Yan Cheng. (2022) Poloxam Thermosensitive Hydrogels Loaded with hFGF2-Linked Camelina Lipid Droplets Accelerate Skin Regeneration in Deep Second-Degree Burns. International Journal of Molecular Sciences 23:21, pages 12716.
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Chenyu Shi, Chenyu Wang, He Liu, Qiuju Li, Ronghang Li, Yan Zhang, Yuzhe Liu, Ying Shao & Jincheng Wang. (2020) Selection of Appropriate Wound Dressing for Various Wounds. Frontiers in Bioengineering and Biotechnology 8.
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Evandro Pedro de Campos, Letícia Nava Trombini, Rafaela Rodrigues, Décio Luis Portella, Adriana Carolina Werner, Miriele Cristina Ferraz, Robson Vicente Machado de Oliveira, José Carlos Cogo, Yoko Oshima-Franco, Norberto Aranha & Marli Gerenutti. (2015) Healing activity of Casearia sylvestris Sw. in second-degree scald burns in rodents. BMC Research Notes 8:1.
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A. Jiménez, J. Zhang & M.A. Matthews. (2008) Evaluation of CO 2 ‐based cold sterilization of a model hydrogel . Biotechnology and Bioengineering 101:6, pages 1344-1352.
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Hye‐Jin Yoo & Han‐Do Kim. (2007) Characteristics of waterborne polyurethane/poly( N ‐vinylpyrrolidone) composite films for wound‐healing dressings . Journal of Applied Polymer Science 107:1, pages 331-338.
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Leslie DeSanti. (2005) Pathophysiology and Current Management of Burn Injury. Advances in Skin & Wound Care 18:6, pages 323-332.
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Douglas Queen, Heather Orsted, Hiromi Sanada & Geoff Sussman. (2004) A dressing history. International Wound Journal 1:1, pages 59-77.
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M. Miraftab, Q. Qiao, J.F. Kennedy, S.C. Anand & M.R. Groocock. (2003) Fibres for wound dressings based on mixed carbohydrate polymer fibres. Carbohydrate Polymers 53:3, pages 225-231.
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M. Miraftab, Q. Qiao, J.F. Kennedy, M.R. GroocockS.C. Anand. (2002) Advanced wound care materials: developing an alginate fibre containing branan ferulate. Journal of Wound Care 11:9, pages 353-356.
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Sung Ran Hong, Seung Jun Lee, Jong Won Shim, Young Seon Choi, Young Moo Lee, Kang Won Song, Moon Hyang Park, Young Soo Nam & Sang In Lee. (2001) Study on gelatin-containing artificial skin IV: a comparative study on the effect of antibiotic and EGF on cell proliferation during epidermal healing. Biomaterials 22:20, pages 2777-2783.
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Manimalha Balasubramani, T.Ravi Kumar & Mary Babu. (2001) Skin substitutes: a review. Burns 27:5, pages 534-544.
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Subhash AnandM. Miraftab, Q. Qiao, J.F. Kennedy, S.C. Anand & G. Collyer. 2001. Medical Textiles. Medical Textiles 164 186 .
Purna Sai K & Mary Babu. (2000) Collagen based dressings — a review. Burns 26:1, pages 54-62.
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Canan TaşAhmet KozlucaMehmet Alİ OnurAşKin TümerHaldun VahapoǧluM. Hadİ ZareİePaul A. GunningErhan Pİşkin. (1998) In Vivo Degradation and Release Kinetics of Chloramphenicol-Loaded Poly(D,L)-Lactide Sponges . Tissue Engineering 4:4, pages 353-363.
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Marc Shalaby & Shalaby W. Shalaby. (2016) Healing of Burn Wounds and Managing Infection. Journal of Bioactive and Compatible Polymers 12:4, pages 330-341.
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Erhan Pi?kin & Asl? G. Ata�. (1996) Glow-discharge-modified activated carbon cloths as skin substitutes. Journal of Biomedical Materials Research 30:4, pages 493-499.
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A. Jayakrishnan & S.R. Jameela. (1996) Glutaraldehyde as a fixative in bioprostheses and drug delivery matrices. Biomaterials 17:5, pages 471-484.
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Ahmet Kozluca, Emir B. Denkbaş & Erhan Pişkin. (2008) A Potential Soft Tissue Filling Material: Chloramphenicol Loaded Poly(D, L–Lactide) Sponges. Artificial Organs 19:9, pages 902-908.
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G. J. Beumer, C. A. van Blitterswijk & M. Ponec. (2004) Biocompatibility of a biodegradable matrix used as a skin substitute: An in vivo evaluation . Journal of Biomedical Materials Research 28:5, pages 545-552.
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W. L. J. Hinrichs, E. J. C. M. P. Lommen, Ch. R. H. Wildevuur & J. Feijen. (2004) Fabrication and characterization of an asymmetric polyurethane membrane for use as a wound dressing. Journal of Applied Biomaterials 3:4, pages 287-303.
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Yoshimitsu Kuroyanagi, Eikichi Kim, Makoto Kenmochi, Kenji Ui, Hiromi Kageyama, Motonobu Nakamura, Akira Takeda & Nobuyuki Shioya. (2004) A silver‐sulfadiazine‐impregnated synthetic wound dressing composed of poly‐l‐leucine spongy matrix: An evaluation of clinical cases. Journal of Applied Biomaterials 3:2, pages 153-161.
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Joon B. Park & Roderic S. LakesJoon B. Park & Roderic S. Lakes. 1992. Biomaterials. Biomaterials 245 264 .
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A. Nangia & C.T. Hung. (1990) Preclinical evaluation of skin substitutes. Burns 16:5, pages 358-367.
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Kea‐Yong Kim. (2011) Development of biopolymers for artificial skin substitutes and blood‐compatible materials. Makromolekulare Chemie. Macromolecular Symposia 33:1, pages 311-318.
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Sezer Kutay, Teoman Tincer & Nesrin Hasirci. (2007) Polyurethanes as biomedical materials. British Polymer Journal 23:3, pages 267-272.
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D Queen, J.D.S Gaylor, J.H Evans, J.M Courtney & W.H Reid. (1987) The preclinical evaluation of the water vapour transmission rate through burn wound dressings. Biomaterials 8:5, pages 367-371.
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Robert M. Nalbandian, Raymond L. Henry, Kenneth W. Balko, Dennis V. Adams & Norwood R. Neuman. (1987) Pluronic F-127 gel preparation as an artificial skin in the treatment of third-degree burns in pigs. Journal of Biomedical Materials Research 21:9, pages 1135-1148.
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D. Queen, J.H. Evans, J.D.S. Gaylor, J.M. Courtney & W.H. Reid. (1987) Burn wound dressings—a review. Burns 13:3, pages 218-228.
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William W. Monafo & Bruce Freedman. (1987) Topical Therapy for Burns. Surgical Clinics of North America 67:1, pages 133-145.
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D. Queen, J.H. Evans, J.D.S. Gaylor, J.M. Courtney & W.H. Reid. (1986) Preclinical assessment of burn wound dressings. Burns 12:3, pages 161-166.
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Daniel Cohn, Allan S. Hoffman & Buddy D. Ratner. (2003) Radiation‐grafted polymers for biomaterial applications. I. 2‐hydroxyethyl methacrylate: Ethyl methacrylate grafting onto low density polyethylene films. Journal of Applied Polymer Science 29:8, pages 2645-2663.
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Milos Chvapil. (2004) Considerations on manufacturing principles of a synthetic burn dressing: A review. Journal of Biomedical Materials Research 16:3, pages 245-263.
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