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中华口腔医学研究杂志(电子版) ›› 2014, Vol. 8 ›› Issue (01) : 72 -74. doi: 10.3877/cma.j.issn.1674-1366.2014.01.017

综述

眶底缺损重建材料的研究进展
苏铭扬1, 邬腊梅1, 杨宏宇2,()   
  1. 1.515041 汕头大学医学院
    2.北京大学深圳医院口腔颌面外科
  • 收稿日期:2013-05-27 出版日期:2014-02-01
  • 通信作者: 杨宏宇
  • 基金资助:
    国家自然科学基金(30973339)广东省科技厅国际合作项目(2010B050100007)

The research progress of orbital floor defect reconstruction materials

Mingyang Su1, Lamei Wu1, Hongy Yang1,()   

  1. 1.Shantou University Medical College, Shantou 515041, China
  • Received:2013-05-27 Published:2014-02-01
  • Corresponding author: Hongy Yang
引用本文:

苏铭扬, 邬腊梅, 杨宏宇. 眶底缺损重建材料的研究进展[J/OL]. 中华口腔医学研究杂志(电子版), 2014, 8(01): 72-74.

Mingyang Su, Lamei Wu, Hongy Yang. The research progress of orbital floor defect reconstruction materials[J/OL]. Chinese Journal of Stomatological Research(Electronic Edition), 2014, 8(01): 72-74.

眼眶底板骨质菲薄,当眶内容物受到钝力作用使眶内压突然升高时易发生骨折。眶底骨折因其所在位置特殊,一旦骨折则无法复位,只能采用材料修补眶底。 目前许多材料被用于重建眶底缺损,包括一直被大家认为是“金标准”的自体骨。 但自体骨也有一定局限性,如来源少及额外的手术负担,越来越多的异体材料被开发并运用到临床。 本文对目前常使用的眶底重建材料作一综述。

Orbital floor, a meager bone, is prone to fracture when the intraorbital pressure increases suddenly in the orbital contents by blunt force. Due to the special location, the orbital floor fracture cannot be reset but to use the materials to repair once it happens. Many materials are used for the reconstruction of orbital floor defects, including autografts which have been traditionally considered as the "gold standard" choice. Since autografts are available in limited amounts and carry the need for extra surgery, more and more alloplastic materials werehave been developed and applied to the clinic.This paper reviewed the orbital floor reconstruction materials used currently.

[1]
Smith B, Regan WF Jr. Blow-out fracture of the orbit;mechanism and correction of internal orbital fracture [J]. Am J Ophthalmol, 1957,44(6):733-739.
[2]
Tenzel RR, Miller GR. Orbital blow-out fracture repair,conjunctival approach [J]. Am J Ophthalmol, 1971,71(5):1141-1142.
[3]
Sires BS, Stanley RB Jr, Levine LM. Oculocardiac reflex caused by orbital floor trapdoor fracture: an indication for urgent repair [J]. Arch Ophthalmol, 1998,116(7):955-956.
[4]
Bansagi ZC, Meyer DR. Internal orbital fractures in the pediatric age group: characterization and management [J].Ophthalmology, 2000,107(5):829-836.
[5]
Burnstine MA. Clinical recommendations for repair of isolated orbital floor fractures: an evidence-based analysis [J].Ophthalmology, 2002,109(7):1207-1210.
[6]
Chang EW, Manolidis S. Orbital floor fracture management[J]. Facial Plast Surg, 2005,21(3):207-213.
[7]
Ilankovan V, Jackson IT. Experience in the use of calvarial bone grafts in orbital reconstruction [J]. Br J Oral Maxillofac Surg, 1992,30(2):92-96.
[8]
Chowdhury K, Krause GE. Selection of materials for orbital floor reconstruction [J]. Arch Otolaryngol Head Neck Surg,1998,124(12):1398-1401.
[9]
Rudagi BM, Halli R, Mahindra U, et al. Autogenous mandibular symphysis graft for orbital floor reconstruction: a preliminary study[J]. J Maxillofac Oral Surg, 2009,8(2):141-144.
[10]
Sakakibara S, Hashikawa K, Terashi H, et al. Reconstruction of the orbital floor with sheets of autogenous iliac cancellous bone [J]. J Oral Maxillofac Surg, 2009,67(5):957-961.
[11]
Ozaki W, Buchman SR. Volume maintenance of onlay bone grafts in the craniofacial skeleton: micro-architecture versus embryologic origin[J]. Plast Reconstr Surg, 1998,102(2):291-299.
[12]
Young VL, Schuster RH, Harris LW. Intracerebral hematoma complicating split calvarial bone-graft harvesting [J]. Plast Reconstr Surg, 1990,86(4):763-765.
[13]
Campbell DG, Li P. Sterilization of HIV with irradiation:relevance to infected bone allografts [J]. Aust N Z J Surg,1999,69(7):517-521.
[14]
Sallam MM, Hashem HA, Shokier HMR. Use of demineralized bone sheets in reconstruction of orbital floor trap door fracture[J]. J Appl Sci Res, 2010,6(6):653-658.
[15]
Chowdhury K, Krause GE. Selection of materials for orbital floor reconstruction [J]. Arch Otolaryngol Head Neck Surg,1998,124(12):1398-1401.
[16]
Gear AJ, Lokeh A, Aldridge JH, et al. Safety of titanium mesh for orbital reconstruction [J]. Ann Plast Surg, 2002,48(1):1-9.
[17]
Kozakiewicz M, Elgalal M, Loba P, et al. Clinical application of 3D pre-bent titanium implants for orbital floor fractures [J].J CranioMaxillofac Surg, 2009,37(4):229-234.
[18]
Lieger O, Richards R, Liu M, et al. Computer-assisted design and manufacture of implants in the late reconstruction of extensive orbital fractures [J]. Arch Facial Plast Surg, 2010,12(3):186-191.
[19]
Essig H, Dressel L, Rana M, et al. Precision of posttraumatic primary orbital reconstruction using individually bent titanium mesh with and without navigation: a retrospective study [J].Head Face Med, 2013,9(1):18.
[20]
Schubert W, Gear AJ, Lee C, et al. Incorporation of titanium mesh in orbital and midface reconstruction [J]. Plast Reconstr Surg, 2002,110(4):1022-1032.
[21]
Elmazar H, Jackson IT, Degner D, et al. The efficacy of Gore-Tex vs. hydroxyapatite and bone graft in reconstruction of orbital floor defects [J]. Eur J Plast Surg, 2003,25(7-8):362-368.
[22]
Lipshutz H, Ardizone RA. The use of silicone rubber in the immediate reconstruction of fractures of the floor of the orbit[J]. J Trauma, 1963(3):563-568.
[23]
Prowse SJ, Hold PM, Gilmour RF, et al. Orbital floor reconstruction: a case for silicone. A 12 year experience [J]. J Plast Reconstr Aesthet Surg, 2010,63(7):1105-1109.
[24]
Schmidt BL, Lee C, Young DM, et al. Intraorbital squamous epithelial cyst: an unusual complication of Silastic implantation[J]. J Craniofac Surg, 1998,9(5):452-458.
[25]
Lupi E, Messi M, Ascani G, et al. Orbital floor repair using medpor porous polyethylene implants[J]. Invest Ophthalmol Vis Sci, 2004,45(5):4700.
[26]
Fialkov JA, Holy C, Forrest CR, et al. Postoperative infections in craniofacial reconstructive procedures [J]. J Craniofac Surg,2001,12(4):362-368.
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