about
Comparative experimental study of wound healing in mice: Pelnac versus IntegraThe billion cell construct: will three-dimensional printing get us there?Skin tissue engineering advances in severe burns: review and therapeutic applicationsSubatmospheric pressure wound therapy and the vacuum-assisted closure device: basic science and current clinical successes.Management of burn wounds with prompt excision and immediate closure.The use of skin substitutes in the treatment of the hand and upper extremity.Integra® dermal regenerative template application on exposed tendon.Synthesis of tissues and organs.Prevalence of immune disease in patients with wounds presenting to a tertiary wound healing centre.Tissue engineering of cultured skin substitutes.Biological skin substitutes for wound cover and closure.A review of the use of a dermal skin substitute in burns care.Characterization of a new degradable polymer scaffold for regeneration of the dermis: In vitro and in vivo human studiesTissue engineering in burn scar reconstruction.Porcine wound healing in full-thickness skin defects using Integra™ with and without fibrin glue with keratinocytes.Tissue engineered human skin equivalentsNanofibrous materials for wound care.Acellular dermal matrix in the management of the burn patient.Is artificial dermis an effective tool in the treatment of tendon-exposed wounds?The use of Integra® Dermal Regeneration Template in the reconstruction of traumatic degloving injuries.Surgical management of the burn wound and use of skin substitutes: an expert panel white paper.Biologic skin substitutes.Advanced therapies of skin injuries.Wound Healing: Biologics, Skin Substitutes, Biomembranes and Scaffolds.Efficacy of dermal substitute on deep dermal to full thickness burn injury: a systematic review.Dermal skin template for the management of multiple cutaneous leiomyomas.Use of Integra in the Management of Complex Hand Wounds From Cancer Resection and Nonburn Trauma.Recent advances in burn care.Collagen-based devices for soft tissue repair.Perfusion of medium improves growth of human oral neomucosal tissue constructs.The use of dermal substitutes in burn surgery: acute phase.Preparation and characterization of a collagen/chitosan/heparin matrix for an implantable bioartificial liver.Effects of pore size in 3-D fibrous matrix on human trophoblast tissue development.Clinical effectiveness of dermal substitution in burns by topical negative pressure: a multicenter randomized controlled trial.Split-thickness skin grafting: early outcomes of a clinical trial using different graft thickness.Anti-HLA sensitization in extensively burned patients: extent, associated factors, and reduction in potential access to vascularized composite allotransplantation.Effects of mature adipocyte-derived dedifferentiated fat (DFAT) cells on generation and vascularisation of dermis-like tissue after artificial dermis grafting.Adipose-derived aldehyde dehydrogenase-expressing cells promote dermal regenerative potential with collagen-glycosaminoglycan scaffold.Long-term in vivo assessment of bioengineered skin substitutes: a clinical study.Optimization of a polyurethane dermal matrix and experience with a polymer-based cultured composite skin.
P2860
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P2860
description
article
@en
im September 1988 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована у вересні 1988
@uk
ലേഖനം
@ml
name
Artificial Dermis for Major Burns
@en
Artificial Dermis for Major Burns
@nl
type
label
Artificial Dermis for Major Burns
@en
Artificial Dermis for Major Burns
@nl
prefLabel
Artificial Dermis for Major Burns
@en
Artificial Dermis for Major Burns
@nl
P2093
P1433
P1476
Artificial dermis for major burns. A multi-center randomized clinical trial
@en
P2093
A Luterman
D Heimbach
P304
P356
10.1097/00000658-198809000-00008
P407
P577
1988-09-01T00:00:00Z