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Review Article| Volume 100, ISSUE 4, P777-785, August 2020

Defining the Role of Hyperbaric Oxygen Therapy as an Adjunct to Reconstructive Surgery

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      References

        • Gesell L.B.
        Hypebaric oxygen therapy indications.
        Undersea and Hyperbaric Medical Society, Durham (NC)2008
        • Weaver L.K.
        Carbon monoxide poisoning: in hyperbaric oxygen therapy indications.
        Undersea and Hyperbaric Medical Society, Durham (NC)2008
        • Thom S.R.
        • Meyers R.A.M.
        • Kindwall E.P.
        Carbon monoxide and cyanide poisoning in hyperbaric medicine.
        in: Kindwall E.P. Whelan H.T. Hyperbaric Medicine Practice. 3rd” edition. Best Publishing Company, Flagstaff (AZ)2008
        • Thom S.R.
        Functional inhibition of leukocyte B2 integrins by hyperbaric oxygen in carbon monoxide-mediated brain injury in rats.
        Toxicol Appl Pharmacol. 1993; 123: 248-256
        • Thom S.R.
        • Mendiguren I.
        • Hardy K.R.
        • et al.
        Inhibition of human neutrophil beta 2 integrin-dependent adherence by hyperbaric oxygen.
        Am J Physiol. 1997; 272: C770-C777
        • Moon R.E.
        Decompression illness: in hyperbaric oxygen therapy indications.
        Undersea and Hyperbaric Medical Society, Durham (NC)2008
        • Elliot D.H.
        • Kindwall E.P.
        Decompression illness in hyperbaric medicine.
        in: Kindwall E.P. Whelan H.T. Hyperbaric Medicine Practice. 3rd” edition. Best Publishing Company, Flagstaff (AZ)2008
        • Eckenhoff R.G.
        • Olstad C.S.
        • Carrod G.
        Human dose-response relationship for decompression and endogenous bubble formation.
        J Appl Physiol. 1990; 63: 914-918
        • Philp R.B.
        • Schacham P.
        • Gowdy C.W.
        Involvement of platelets and microthrombi in experimental decompression sickness: similarities with disseminated intravascular coagulation.
        Aerosp Med. 1971; 42: 494-502
        • Helps S.C.
        • Gorman D.F.
        Air embolism of the brain in rabbits pre-treated with mechlorethamine.
        Stroke. 1991; 22: 351-354
        • Madden L.A.
        • Laden G.
        Gas bubbles may not be the underlying cause of decompression illness - The at-depth endothelial dysfunction hypothesis.
        Medical Hypothesis. 2009; 72: 389-392
        • Martin J.D.
        • Thom S.R.
        Vascular leukocyte sequestration in decompression sickness and prophylactic hyperbaric oxygen in rats.
        Aviat Space Environ Med. 2002; 73: 565-569
        • Nosum V.
        • Hjelde A.
        • Brubakk A.O.
        Small amounts of venous gas embolism cause delayed impairment of endothelial function and increase polymorphonuclear neutrophil infiltration.
        Eur J Appl Physiol. 2002; 86: 209-214
        • Zamboni W.A.
        • Roth A.C.
        • Russell R.C.
        • et al.
        The effect of hyperbaric oxygen treatment on the microcirculation of ischemic skeletal muscle.
        Undersea Biomed Reseacch. 1990; 17 (abstract): 26
        • Strauss M.B.
        Crush injuries and skeletal muscle-compartment syndromes: in hyperbaric oxygen therapy indications.
        Undersea and Hyperbaric Medical Society, Durham (NC)2008
        • Francis A.
        • Baynosa R.
        Ischemia-reperfusion injury and hyperbaric oxygen pathways: a review of cellular mechanisms.
        Diving Hyperb Med. 2017; 47: 110-117
        • Nylander G.
        • Lewis D.
        Reduction of post ischemic edema with hyperbaric oxygen.
        Plast Reconstr Surg. 1985; 76: 596-603
        • Sheffield P.J.
        Tissue oxygen measurements with respect to soft-tissue wound healing with normobaric and hyperbaric oxygen.
        HBO Rev. 1985; 6: 18-46
      1. Marx RE. Radiation injury to tissue. In: Kindwall EP, Whelan HT, editors. Hyperbaric Medicine Practice, 3rd” edition. Flagstaff (AZ): Best Publishing Company; 2008. p851–904.

        • Demling R.H.
        Burns and other thermal injuries.
        in: Way L.W. Doherty G.M. Current surgical diagnosis and treatment. 11th edition. Mcgraw-Hill Companies, 2003: 267
        • Cianci P.
        • Slade B.J.
        Acute thermal burn injury: in hyperbaric oxygen therapy indications.
        Undersea and Hyperbaric Medical Society, Durham (NC)2008
        • Ward P.A.
        • Till G.O.
        The autodestructive consequences of thermal injury.
        J Burn Care Rehabil. 1985; 6: 251-255
        • Cianci P.
        • Slade J.B.
        • Sato R.M.
        • et al.
        Adjunctive hyperbaric oxygen therapy in the treatment of thermal burns.
        Undersea Hyperb Med. 2013; 40: 89-108
        • Zamboni W.A.
        • Baynosa R.C.
        Compromised grafts and flaps: in hyperbaric oxygen therapy indications.
        Undersea and Hyperbaric Medical Society, Durham (NC)2008
        • Zamboni W.A.
        • Roth A.C.
        • Russel R.C.
        • et al.
        Morphological analysis of the microcirculation during reperfusion of ischemic skeletal muscle and the effect of hyperbaric oxygen.
        Plast Reconstr Surg. 1993; 91: 1110-1123
        • Hong J.P.
        • Kwon H.
        • Chung Y.K.
        • et al.
        The effect of hyperbaric oxygen on ischemia-reperfusion injury: an experimental study in a rat musculocutaneous flap.
        Ann Plast Surg. 2003; 51: 478-487
        • Gonnering R.S.
        • Kindwall E.P.
        • Goldmann R.W.
        Adjunct hyperbaric oxygen therapy in periorbital reconstruction.
        Arch Ophthalmol. 1986; 104: 439-443
        • Waterhouse M.A.
        • Zamboni W.A.
        • Brown R.E.
        • et al.
        The use of HBO in compromised free tissue transfer and replantation, a clinical review.
        Undersea Hyperb Med. 1993; 20: 64