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- Title
Porous high-density polyethylene in facial reconstruction and revision rhinoplasty: a prospective cohort study.
- Authors
Mohammadi, Shabahang; Ghourchian, Shadi; Izadi, Farzad; Daneshi, Ahmad; Ahmadi, Aslan
- Abstract
Introduction: Initial methods which used human tissues as reconstruction materials caused different problems including rejection, limited shapes and infection. In 1970s, PHDPE ( Medpor®) was introduced by its exclusive advantageous including no donor site morbidity, easily shaped and the minimal foreign body reaction. Hereby, we report our experience of using Medpor® in facial reconstruction especially in frontal reconstruction and orbital rim with a large sample size. Methods: This study was a prospective cohort study. Surgical techniques included using Medpor® in reconstruction of lamina papiracea (LP) (15 patients), frontal bone (15 patients), orbital rim (18 patients) and open rhinoplasty (8 patients). All interventions on LP were performed by endoscopic procedures. All frontal operations were carried out by bicoronal incision. In orbital defects, we used subciliary incision. Results: From all 56 patients, 1 case had primitive neuroectodermal tumor (PNET) of maxillary sinus. In that case, reconstruction of inferior orbital rim was not successful and extrusion was occurred after radiotherapy. In rhinoplasty and other experiences no extrusion or infection were detected within the next 1 to 3 years of follow up. There were not any palpable and visible irregularities under the skin in our experiences. Conclusions: In this study the patients did not experience any complications during the follow up periods and the satisfaction was remarkable. Gathering these data gives rise to future review studies which can provide more organized evidences for replacing classic reconstructive methods by the presented material.
- Subjects
POLYETHYLENE; RHINOPLASTY; INFECTION; FOREIGN bodies; TUMORS
- Publication
Head & Face Medicine, 2012, Vol 8, Issue 1, p17
- ISSN
1746-160X
- Publication type
Article
- DOI
10.1186/1746-160X-8-17