Araştırma Makalesi
BibTex RIS Kaynak Göster

Evaluation of Nasal Cavity Volume in Maxillary Unilateral Impacted Canine Teeth with Cone Beam Computed Tomography

Yıl 2023, , 249 - 253, 30.12.2023
https://doi.org/10.52976/vansaglik.1343073

Öz

Kaynakça

  • (2020). Prevalence of impacted teeth in Saudi patients attending dental clinics in the Eastern province of Saudi Arabia: A radiographic retrospective study. The Scientific World Journal, 8104904.
  • Aileni KR, Rachala MR, Prathima CR, Naveen PK, Soujanya D. (2017). Management of an unusual ectopic eruption of maxillary canine. Journal of Clinical and Diagnostic Research, 11(5), ZD03.
  • Al-Mayali AMY, Nahidh M, Alnajar HA, Fahad AH. (2020). Impaction prevalence of permanent teeth pattern from orthodontic view. EurAsian Journal of BioSciences, 14(2), 2823-2828.
  • Alshehri A, Hakami Z, Marran K, Qaysi A, Shabi M, Bokhari A. (2023). Unilateral vs bilateral maxillary canine ımpaction: A cone–beam computed tomography study of patterns and associations. The Journal of Contemporary Dental Practice, 24(1), 21-28.
  • Chapokas AR, Almas K, Schincaglia GP. (2012). The impacted maxillary canine: A proposed classification for surgical exposure. Oral Surgery, Oral Medicine, Oral Pathology and Oral Radiology, 113(2), 222-228.
  • Cruz RM. (2019). Orthodontic traction of impacted canines: Concepts and clinical application. Dental Press Journal of Orthodontics, 24, 74-87.
  • Ericson S, Kurol J. (1987). Radiographic examination of ectopically erupting maxillary canines. American Journal of Orthodontics and Dentofacial Orthopedics, 91(6), 483-492.
  • Koç A, Sezgin ÖS, Kayıpmaz S. (2020). Comparing different planimetric methods on volumetric estimations by using cone beam computed tomography. La Radiologia Medica, 125, 398-405.
  • Peck S, Peck L, Kataja M. (1994). The palatally displaced canine as a dental anomaly of genetic origin. The Angle Orthodontist, 64(4), 250-256.
  • Rao JJ, Kumar EV, Babu KR, Chowdary VS, Singh J, Rangamani SV. (2005). Classification of nasal septal deviations relation to sinonasal pathology. Indian Journal of Otolaryngology and Head and Neck Surgery, 57, 199-201. Saiar M, Rebellato J, Sheats RD. (2006). Palatal displacement of canines and maxillary skeletal width. American Journal of Orthodontics and Dentofacial Orthopedics, 129(4), 511-9.
  • Schroder AGD, Guariza-Filho O, de Araujo CM, Ruellas AC, Tanaka OM, Porporatti AL. (2018). To what extent are impacted canines associated with root resorption of the adjacent tooth?: A systematic review with meta-analysis. The Journal of the American Dental Association, 149(9), 765-767.
  • Sidden AM, Tami TA, Pensak ML, Cotton RT, Glucman JL. (2002). Functional disorder. Otolaryngology, the Essentials, Thieme, New York.
  • Singh A. Paranasal sinus anatomy. (2013). Available at: http://emedicine. medscape.com/article/1899145.
  • Yan B, Sun Z, Fields H, Wang L, Luo L. (2013). Etiologic factors for buccal and palatal maxillary canine impaction: a perspective based on cone-beam computed tomography analyses. American Journal of Orthodontics and Dentofacial Orthopedics, 143(4), 527-534.

Maksiller Unilateral Gömülü Kanin Dişlerde Nazal Kavite Hacminin Konik Işınlı Bilgisayarlı Tomografi ile Değerlendirilmesi

Yıl 2023, , 249 - 253, 30.12.2023
https://doi.org/10.52976/vansaglik.1343073

Öz

Amaç
Maksiller kanin dişler, üçüncü molar dişlerden sonra en çok gömük kalan dişlerdir. Bu dişlerin gömük kalma etyolojisi tam olarak belli olmamakla beraber, palatinal konumlu dişlerin genetik faktörler kaynaklı bukkal konumlu gömülü kaninlerin ise daha çok lokal kaynaklı faktörler nedeniyle süremedikleri düşünülmektedir. Bu çalışmanın amacı maksiller gömülü kanin dişlerin nazal kavitede bir darlığa sebep olup olmadığını öğrenmektir.
Materyal Metot
Fakültemize başvurmuş herhangi bir nedenle konik ışınlı bilgisayarlı tomografi alınmış 100 maksiller unilateral kanin dişi gömülü olan hastaların nazal kavite hacimleri manuel segmentasyon yöntemi ile 3D-DOCTOR (Able Software Corp., Lexington, MA, USA uygulaması ile yapılmış ve gömülü olmayan tarafa göre karşılaştırılmıştır.
Sonuç
Unilateral maksiller kanin dişi gömülü hastaların nazal kavite hacimleri, gömülü olmayan tarafa göre daha küçük bulunmuş ancak bu farklılık istatistiksel olarak anlamlı bulunmamıştır (p>0.05).

Kaynakça

  • (2020). Prevalence of impacted teeth in Saudi patients attending dental clinics in the Eastern province of Saudi Arabia: A radiographic retrospective study. The Scientific World Journal, 8104904.
  • Aileni KR, Rachala MR, Prathima CR, Naveen PK, Soujanya D. (2017). Management of an unusual ectopic eruption of maxillary canine. Journal of Clinical and Diagnostic Research, 11(5), ZD03.
  • Al-Mayali AMY, Nahidh M, Alnajar HA, Fahad AH. (2020). Impaction prevalence of permanent teeth pattern from orthodontic view. EurAsian Journal of BioSciences, 14(2), 2823-2828.
  • Alshehri A, Hakami Z, Marran K, Qaysi A, Shabi M, Bokhari A. (2023). Unilateral vs bilateral maxillary canine ımpaction: A cone–beam computed tomography study of patterns and associations. The Journal of Contemporary Dental Practice, 24(1), 21-28.
  • Chapokas AR, Almas K, Schincaglia GP. (2012). The impacted maxillary canine: A proposed classification for surgical exposure. Oral Surgery, Oral Medicine, Oral Pathology and Oral Radiology, 113(2), 222-228.
  • Cruz RM. (2019). Orthodontic traction of impacted canines: Concepts and clinical application. Dental Press Journal of Orthodontics, 24, 74-87.
  • Ericson S, Kurol J. (1987). Radiographic examination of ectopically erupting maxillary canines. American Journal of Orthodontics and Dentofacial Orthopedics, 91(6), 483-492.
  • Koç A, Sezgin ÖS, Kayıpmaz S. (2020). Comparing different planimetric methods on volumetric estimations by using cone beam computed tomography. La Radiologia Medica, 125, 398-405.
  • Peck S, Peck L, Kataja M. (1994). The palatally displaced canine as a dental anomaly of genetic origin. The Angle Orthodontist, 64(4), 250-256.
  • Rao JJ, Kumar EV, Babu KR, Chowdary VS, Singh J, Rangamani SV. (2005). Classification of nasal septal deviations relation to sinonasal pathology. Indian Journal of Otolaryngology and Head and Neck Surgery, 57, 199-201. Saiar M, Rebellato J, Sheats RD. (2006). Palatal displacement of canines and maxillary skeletal width. American Journal of Orthodontics and Dentofacial Orthopedics, 129(4), 511-9.
  • Schroder AGD, Guariza-Filho O, de Araujo CM, Ruellas AC, Tanaka OM, Porporatti AL. (2018). To what extent are impacted canines associated with root resorption of the adjacent tooth?: A systematic review with meta-analysis. The Journal of the American Dental Association, 149(9), 765-767.
  • Sidden AM, Tami TA, Pensak ML, Cotton RT, Glucman JL. (2002). Functional disorder. Otolaryngology, the Essentials, Thieme, New York.
  • Singh A. Paranasal sinus anatomy. (2013). Available at: http://emedicine. medscape.com/article/1899145.
  • Yan B, Sun Z, Fields H, Wang L, Luo L. (2013). Etiologic factors for buccal and palatal maxillary canine impaction: a perspective based on cone-beam computed tomography analyses. American Journal of Orthodontics and Dentofacial Orthopedics, 143(4), 527-534.
Toplam 14 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Ağız, Diş ve Çene Radyolojisi
Bölüm Orijinal Araştırma Makaleleri
Yazarlar

Sema Kaya 0000-0002-6306-3901

Saadet Çınarsoy Ciğerim 0000-0002-4384-0929

Yayımlanma Tarihi 30 Aralık 2023
Gönderilme Tarihi 14 Ağustos 2023
Yayımlandığı Sayı Yıl 2023

Kaynak Göster

APA Kaya, S., & Çınarsoy Ciğerim, S. (2023). Maksiller Unilateral Gömülü Kanin Dişlerde Nazal Kavite Hacminin Konik Işınlı Bilgisayarlı Tomografi ile Değerlendirilmesi. Van Sağlık Bilimleri Dergisi, 16(3), 249-253. https://doi.org/10.52976/vansaglik.1343073

ISSN 

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