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Congenital Defect of Vomer: A Case Report and Review of the Literature

Lee JH, Lee SH, Choi TW, Lee JH

  • KMID: 2276558
  • Korean J Otolaryngol-Head Neck Surg.
  • 2006 Jan;49(1):106-108.
Among the variety of local and systemic causative factors of nasal septal defects, the most frequent cause is the iatrogenic perforation found during septal surgery. We report a 10-year-old boy...
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Congenital Defect of the Vomer: Report of Three Cases

Choi SW, Woo HJ, Bae CH, Song SY, Kim YD

  • KMID: 2297661
  • J Rhinol.
  • 2008 May;15(1):74-76.
Defect or perforation of the nasal septum may arise from diverse causes such as trauma, infection, drug abuse, inhalant irritants and neoplasia. The septal defect or perforation is usually located...
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Complex osteotomy for the correction of post-traumatic midfacial deformity

Lee MH, Song CW, Lee DG, Kim SG, Lee YC, Cho BO

  • KMID: 1961156
  • J Korean Assoc Oral Maxillofac Surg.
  • 2002 Dec;28(6):488-490.
The traffic accident was one of most common cause for the facial bone fracture. When it involved the midfacial structures, the nasal bone fracture was usually shown. If the reduction...
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Are Cross-hatching Incisions Mandatory for Correction of Cartilaginous Septal Deviation?

Yang JW, Kim SI, Kwon JW, Park DJ

OBJECTIVES: Cross-hatching incisions have been considered mandatory for correcting cartilaginous septal deviation. We evaluated the clinical outcome of septoplasty without cross-hatching incisions to determine the necessity for making septal cartilage...
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Postnatal Development of the Anterior Skull Base and Nasal Septum: CT Study

Kim KS, Kim HJ, Lee KH, Roh HG, Lim MK

PURPOSE: To know the normal CT appearance of the anterior skull base and nasal septum after birth. MATERIALS AND METHODS: Coronal CT scans with a helical mode were performed from...
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Morphologic Analysis of the Deviated Nasal Septum

Kim J, Cho SH, Cho JH, Kim SW

BACKGROUND AND OBJECTIVES: The nasal septum, centrally located in the nasal cavity, has dynamic relations with other craniofacial structures and is also influenced by them during development. Moreover, the mosaic...
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A finite element and strain gauge analysis on the displacement of craniofacial complex with cervical headgear

Kim HS, Nahm DS

  • KMID: 2271443
  • Korean J Orthod.
  • 1987 Sep;17(2):185-197.
This paper was undertaken to observe the displacement of craniofacial complex with cervical headgear and to compare narrowing or widening effect of palate by use of contraction or expansion face-bow,...
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Analysis of alveolar molding effects in infants with bilateral cleft lip and palate when treated with pre-surgical naso-alveolar molding appliance

Nahm DS, Yang WS, Baek SH, Kim SW

  • KMID: 1551714
  • Korean J Orthod.
  • 1999 Dec;29(6):649-662.
The goals of this study were 1) to present pre-surgical naso-alveolar molding(PNAM) appliance for bilateral cleft lip and palate treatment and 2) To evaluate the effects of the PNAM appliance...
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A Correction of Hypoplastic Alar Nasi in Cleft Lip Nose Deformity : Using A Subcutaneous Reduction of Ala and External Lateral Triangle of the Non-Cleft Side

Han KH, Lim JJ, Kim JH

  • KMID: 2329672
  • J Korean Cleft Palate-Craniofac Assoc.
  • 2000 Oct;1(1):29-35.
One of the problems in the correction of the cleft lip nose deformity is the hypoplastic alar nasi on the affected side, even after secondary rhinoplasty. This deformity was managed...
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A Correction Of Unilateral Cleft Lip Nose Deformity using Porous High-density Polyethylene Columellar Strut

Han K, Park B, Son D

  • KMID: 2117983
  • J Korean Cleft Palate-Craniofac Assoc.
  • 2001 Apr;2(1):11-18.
Even though many surgical techniques have been reported to correct the unilateral cleft lip nose deformity, it is very difficult to achieve optimal results. The authors used the porous high-density...
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Histochemical Characterization of the Lectin-binding Sites in the Equine Vomeronasal Organ

Lee JY, Kang TY, Lee YD, Shin TK

  • KMID: 1099816
  • J Vet Sci.
  • 2003 Apr;4(1):15-19.
The binding specificities of various lectins, such as the Dolichos biflorus agglutinin (DBA), soybean agglutinin (SBA), and the Bandeiraea simplicifolia BS-1 (Isolectin B4), Triticum vulgaris (WGA), Arachis hypogaea (PNA), and...
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