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下颌升支牵引成骨矫治半侧颜面发育不全
引用本文:杨志诚,王兴,伊彪,李自力,梁成,王晓霞. 下颌升支牵引成骨矫治半侧颜面发育不全[J]. 中华整形外科杂志, 2009, 25(2). DOI: 10.3760/cma.j.issn.1009-4598.2009.02.008
作者姓名:杨志诚  王兴  伊彪  李自力  梁成  王晓霞
作者单位:1. 天津市口腔医院正颌外科 300041
2. 北京大学口腔医学院,北京,100081
摘    要:目的 探讨下颌升支牵引成骨在矫治半侧颜面发育不全中的应用价值.方法 1999至2006年采用下颌升支牵引成骨矫治半侧颜面发育不全畸形患者15例,其中幼儿及青少年患者12例,成年患者3例,部分患者一期或二期采用了上颌Le Fort Ⅰ型截骨术、健侧下颌升支矢状劈开截骨术、颏成形术及游离肩胛皮瓣移植修复术等.结果 所有患者术后均顺利完成牵引治疗,平均牵引距离21.25舢(15~40 mm).临床及影像学观察新骨形成良好后去除牵引器.术后患侧面部丰满度和面部对称性均得到明显提高,咬合关系均较术前明显改善,咬合平面基本摆正.无一例出现感染或成骨不良等并发症.未出现永久性下牙槽神经功能损伤症状.结论 下颌升支牵引成骨技术是矫治严重半侧颜面发育不全的较好方法,且矫治效果优于传统正颌外科.

关 键 词:半侧颜面发育不全  骨生成,牵张

Distraction osteogenesis of the mandibular ramus in hemtiacial microsomia
YANG Zhi-cheng,WANG Xing,YI Biao,LI Zi-li,LIANG Cheng,WANG Xiao-xia. Distraction osteogenesis of the mandibular ramus in hemtiacial microsomia[J]. Chinese journal of plastic surgery, 2009, 25(2). DOI: 10.3760/cma.j.issn.1009-4598.2009.02.008
Authors:YANG Zhi-cheng  WANG Xing  YI Biao  LI Zi-li  LIANG Cheng  WANG Xiao-xia
Abstract:Objective To study the application of distraction osteogenesis(DO) of the mandibular ramus in hemifacial microsomia. Methods From 1999 to 2006, 15 patients with hemifacial microsemia were treated with DO of the ramus, including 12 cases of children and juveniles, 3 cases of grown-ups. Maxillary Le FortⅠ osteotomy, unilateral sagittal split ramus osteotomy, genioplasty and free scapular flaps were selected to perform on the first or secondary stage of treatment. Results Successful distraction was achieved in all patients with an average distraction distance of 21.25 mm. The distractor was removed after consolidation proved by clinical examination and X-ray. Facial apperance and and occlusal relationship were improved greatly. The occlusal plane was almost normal. There was no infection, malunion or permanent injury of inferior alveolar nerve. Conclusions DO of the ramus is very effective for the correction of severe hemifacial micorsomia. It has much better therapeutic effect than traditional orthognathic procedures.
Keywords:Hemifacial microsomia  Distraction osteogenesis
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