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Original Article

Evaporative water loss from Burns, Grafts and Donor Sites

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Pages 17-22 | Received 03 Nov 1970, Published online: 08 Jul 2009

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Read on this site (5)

G. Arturson. (1984) The History of Burns Treatment in Sweden. Scandinavian Journal of Plastic and Reconstructive Surgery 18:1, pages 11-20.
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P. Åke Öberg, Karen Hammarlund, Gert E. Nilsson, Lena Nilsson & Gunnar Sedin. (1981) Measurement of Water Transport Through the Skin. Upsala Journal of Medical Sciences 86:1, pages 23-26.
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GÖRan Hallmans. (1977) Treatment of Burns with Zinc-Tape: A Study of Local Absorption of Zinc in Humans. Scandinavian Journal of Plastic and Reconstructive Surgery 11:2, pages 155-161.
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GÖRan Eriksson. (1973) Keratinization of Human split Skin Autografts: A Light and Electron Microscopic Study. Scandinavian Journal of Plastic and Reconstructive Surgery 7:1, pages 15-23.
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Göuran Eriksson. (1972) Regeneration of Epidermis After Second Degree Burns: A Light and Electron Microscopic Study on Clinical Burns. Scandinavian Journal of Plastic and Reconstructive Surgery 6:2, pages 83-92.
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Articles from other publishers (32)

Pan Yu, Nan Hong, Min Chen & Xianbiao Zou. (2022) Novel application of absorbable gelatine sponge combined with polyurethane film for dermal reconstruction of wounds with bone or tendon exposure. International Wound Journal 20:1, pages 18-27.
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S. Ingen-Housz-Oro, C. Hoffmann & N. de Prost. (2021) Défaillance cutanée aiguë : conséquences et principes généraux de prise en charge. Annales de Dermatologie et de Vénéréologie - FMC 1:8, pages 583-588.
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John Sojka, Andrew C. Krakowski & Stanislaw P. Stawicki. 2020. Clinical Management of Shock - The Science and Art of Physiological Restoration. Clinical Management of Shock - The Science and Art of Physiological Restoration.
Tony T. Yuan, Ann Marie DiGeorge Foushee, Monica C. Johnson, Angela R. Jockheck-Clark & Jonathan M. Stahl. (2018) Development of Electrospun Chitosan-Polyethylene Oxide/Fibrinogen Biocomposite for Potential Wound Healing Applications. Nanoscale Research Letters 13:1.
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David E. Varon, Jessica D. Smith, Riyam Mistry, Neel A. Kantak & Eric G. Halvorson. 2020. Burns, Infections and Wound Management. Burns, Infections and Wound Management 251 259 .
Neel A. Kantak, Riyam Mistry, David E. Varon & Eric G. Halvorson. (2017) Negative Pressure Wound Therapy for Burns. Clinics in Plastic Surgery 44:3, pages 671-677.
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Christian Smolle, Petra Brinskelle, Andreas Steiner, Michael Schintler & Lars-Peter Kamolz. 2020. Burns, Infections and Wound Management. Burns, Infections and Wound Management 37 50 .
Marc Nicolai Busche, Anne Roettger, Christian Herold, Peter Maria Vogt & Hans-Oliver Rennekampff. (2016) Evaporative Water Loss in Superficial to Full Thickness Burns. Annals of Plastic Surgery 77:4, pages 401-405.
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Sebastian Fischer, Jennifer Wall, Bohdan Pomahac, Robert Riviello & Eric G. Halvorson. (2016) Extra-large negative pressure wound therapy dressings for burns – Initial experience with technique, fluid management, and outcomes. Burns 42:2, pages 457-465.
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Sasiprapa Chitrattha & Thawatchai Phaechamud. (2016) Porous poly( dl -lactic acid) matrix film with antimicrobial activities for wound dressing application. Materials Science and Engineering: C 58, pages 1122-1130.
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Soman Sen. 2016. Burn Care for General Surgeons and General Practitioners. Burn Care for General Surgeons and General Practitioners 63 72 .
Elham Vatankhah, Molamma P Prabhakaran, Guorui Jin, Laleh Ghasemi Mobarakeh & Seeram Ramakrishna. (2013) Development of nanofibrous cellulose acetate/gelatin skin substitutes for variety wound treatment applications. Journal of Biomaterials Applications 28:6, pages 909-921.
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Patricia A. Tufaro & Salvador L. Bondoc. 2011. Rehabilitation of the Hand and Upper Extremity, 2-Volume Set. Rehabilitation of the Hand and Upper Extremity, 2-Volume Set 317 341.e4 .
Shigehiko Suzuki, Katsuya Kawai, Faramartz Ashoori, Naoki Morimoto, Yoshihiko Nishimura & Yoshito Ikada. (2000) Long-term follow-up study of artificial dermis composed of outer silicone layerand inner collagen sponge. British Journal of Plastic Surgery 53:8, pages 659-666.
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Hans O. Rennekampff, John F. Hansbrough, Verena Kiessig, Salwan Abiezzi & Virgil WoodsJr.Jr.. (1996) Wound closure with human keratinocytes cultured on a polyurethane dressing overlaid on a cultured human dermal replacement. Surgery 120:1, pages 16-22.
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Bonnie H. Jaffe & Joseph T. Walsh. (1996) Water flux from partial-thickness skin wounds: Comparative study of the effects of Er:YAG and Ho:YAG lasers. Lasers in Surgery and Medicine 18:1, pages 1-9.
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Robert Demling, Cheryl Lalonde, Yeo K. Youn & Lisa Picard. (1995) Effect of graded increases in smoke inhalation injury on the early systemic response to a body burn. Critical Care Medicine 23:1, pages 171-178.
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J C Ferguson & C J Martin. (1991) A study of skin temperatures, sweat rate and heat loss for burned patients. Clinical Physics and Physiological Measurement 12:4, pages 367-375.
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J C Ferguson, C J Martin & C Rayner. (1991) Burn wound evaporation-measurement of body fluid loss by probe evaporimeter and weight change. Clinical Physics and Physiological Measurement 12:2, pages 143-155.
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Shigehiko Suzuki, Kazuya Matsuda, Nobuhiko Isshiki, Yasushi Tamada & Yoshito Ikada. (1990) Experimental study of a newly developed bilayer artificial skin. Biomaterials 11:5, pages 356-360.
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Shigehiko Suzuki, Kazuya Matsuda, Nobuhiko Isshiki, Yasushi Tamada, Kazuo Yoshioka & Yoshihito Ikada. (1990) Clinical evaluation of a new bilayer “artificial skin” composed of collagen sponge and silicone layer. British Journal of Plastic Surgery 43:1, pages 47-54.
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C J Martin, R Wytch & I F K Muir. (1985) Exposure treatment of the burned patient-a computer simulation of the thermal environment and its effect on evaporation and heat loss. Clinical Physics and Physiological Measurement 6:4, pages 323-336.
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Sei-ichi Aiba, Norihiko Minoura, Yukihiko Fujiwara, Sumio Yamada & Tsutomu Nakagawa. (1985) Laminates composed of polypeptides and elastomers as a burn wound covering. Physicochemical properties. Biomaterials 6:5, pages 290-296.
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C J Martin & I F K Muir. (2016) The Influence of Environmental Factors on Evaporation and Heat Loss from Burned Tissue. Engineering in Medicine 14:1, pages 47-53.
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W. G. Forssmann, G. J. De Jongh, J. W. H. Mali, D. A. Reay, H. Schaefer, G. Stüttgen, F. A. J. Thiele & A. ZeschF. A. J. Thiele. 1981. Normale und Pathologische Physiologie der Haut III / Normal and Pathologic Physiology of the Skin III. Normale und Pathologische Physiologie der Haut III / Normal and Pathologic Physiology of the Skin III 2 121 .
M.J. Tavis, J.W. Thornton, R.H. Bartlett, J.C. Roth & E.A. Woodroof. (1980) A new composite skin prosthesis. Burns 7:2, pages 123-130.
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K. N. Chao, J. G. Eisley & Wen-Jei Yang. (1977) Heat and water losses from burnt skin. Medical & Biological Engineering & Computing 15:6, pages 598-603.
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L.-O. Lamke, G.E. Nilsson & H.L. Reithner. (1977) The evaporative water loss from burns and the water-vapour permeability of grafts and artificial membranes used in the treatment of burns. Burns 3:3, pages 159-165.
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S.-O. Liljedahl. 1977. Fettemulsionen in der parenteralen Ernährung. Fettemulsionen in der parenteralen Ernährung 121 132 .
Michael J. Tavis, John H. Harney, James W. Thornton, Robert H. Bartlett & E. Aubrey Woodroof. (2004) Modified collagen membrane as a skin substitute: Preliminary studies. Journal of Biomedical Materials Research 9:3, pages 285-301.
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J.W.L. Davies, L.-O. Lamke & S.-O. Liljedahl. (1974) A guide to the rate of non-renal water loss from patients with burns. British Journal of Plastic Surgery 27:4, pages 325-329.
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John A. Moncrief. (1973) Burns. New England Journal of Medicine 288:9, pages 444-454.
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