Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2020, Cilt: 23 Sayı: 4, 348 - 355, 31.12.2020
https://doi.org/10.7126/cumudj.795870

Öz

Kaynakça

  • 1. Przystańska A, Rewekant A, Sroka A, Gedrange T, Ekkert M, Jończyk-Potoczna K, et al. Sexual dimorphism of maxillary sinuses in children and adolescents - A retrospective CT study. Ann Anat 2019;11:151437. https://doi.org/10.1016/j.aanat.2019.151437
  • 2. Cohen O, Warman M, Fried M, Shoffel-Havakuk H, Adi M, Halperin D, Lahav Y. Volumetric analysis of the maxillary, sphenoid and frontal sinuses: A comparative computerized tomography based study. Auris Nasus Larynx 2018;45:96-102.
  • 3. Rani SU, Rao GV, Kumar DR, Sravya T, Sivaranjani Y, Kumar MP. Age and gender assessment through three-dimensional morphometric analysis of maxillary sinus using magnetic resonance imaging. J Forensic Dent Sci 2017;9:46.
  • 4. Uthman AT, Al-Rawi NH, Al-Naaimi AS, Al-Timimi JF. Evaluation of maxillary sinus dimensions in gender determination using helical CT scanning. J Forensic Sci 2011;56:403-8.
  • 5. Cappella A, Gibelli D, Cellina M, Mazzarelli D, Oliva AG, De Angelis D, et al. Three-dimensional analysis of sphenoid sinus uniqueness for assessing personal identification: a novel method based on 3D-3D superimposition. Int J Legal Med 2019;133:1895-1901.
  • 6. Wanzeler AMV, Alves-Júnior SM, Ayres L, da Costa Prestes MC, Gomes JT, Tuji FM. Sex estimation using paranasal sinus discriminant analysis: a new approach via cone beam computerized tomography volume analysis. Int J Legal Med 2019;133:1977-1984.
  • 7. Barghouth G, Prior JO, Lepori D, Duvoisin B, Schnyder P, Gudinchet F. Paranasal sinuses in children: size evaluation of maxillary, sphenoid, and frontal sinuses by magnetic resonance imaging and proposal of volume index percentile curves. Eur Radiol 2002;12:1451-8.
  • 8. Değermenci M, Ertekin T, Ülger H, Acer N, Coşkun A. The Age-Related Development of Maxillary Sinus in Children. J Craniofac Surg 2016;27:e38-44.
  • 9. Oliveira JM, Alonso MB, de Sousa E Tucunduva MJ, Fuziy A, Scocate AC, Costa AL. Volumetric study of sphenoid sinuses: anatomical analysis in helical computed tomography. Surg Radiol Anat 2017;39:367-374.
  • 10. Özer CM, Atalar K, Öz II, Toprak S, Barut Ç. Sphenoid Sinus in Relation to Age, Gender, and Cephalometric Indices. J Craniofac Surg 2018;29:2319-2326.
  • 11. Luo H, Wang J, Zhang S, Mi C. The application of frontal sinus index and frontal sinus area in sex estimation based on lateral cephalograms among Han nationality adults in Xinjiang. J Forensic Leg Med 2018;56:1-4.
  • 12. Sidhu R, Chandra S, Devi P, Taneja N, Sah K, Kaur N. Forensic importance of maxillary sinus in gender determination: A morphometric analysis from Western Uttar Pradesh, India. Eur J Gen Dent 2014;3:53-6
  • 13. Bangi BB, Ginjupally U, Nadendla LK, Vadla B. 3D evaluation of maxillary sinus using computed tomography: A Sexual dimorphic study. Int J Dent 2017;2017:9017078.
  • 14. Ariji Y, Kuroki T, Moriguchi S, Ariji E, Kanda S. Age changes in the volume of the human maxillary sinus: a study using computed tomography. Dentomaxillofac Radiol 1994;23:163-8.
  • 15. Koppe T, Nagai H. Growth pattern of the maxillary sinus in the Japanese macaque (Macaca fuscata): reflections on the structural role of the paranasal sinuses. J Anat 1997;190:533-44.
  • 16. Kajoak SA, Ayad CE, Abdalla EA, Mohammed MN, Yousif MO, Mohammed AM. Characterization of sphenoid sinuses for Sudanese population using computed tomography. Glob J Health Sci 2013;6:135-41.
  • 17. Oliveira JX, Perrella A, Santos KC, et al. Accuracy assessment of human sphnoidal sinus volume and area measure and its relationship with sexual dimorphism using the 3D-CT. J. Health Sci Inst 2009;27:390–3.
  • 18. Nejaim Y, Farias Gomes A, Valadares CV, Costa ED, Peroni LV, Groppo FC, et al. Evaluation of volume of the sphenoid sinus according to sex, facial type, skeletal class, and presence of a septum: a cone-beam computed tomographic study. Br J Oral Maxillofac Surg 2019;57:336-340.
  • 19. Yonetsu K, Watanabe M, Nakamura T. Age-related expansion and reduction in aeration of the sphenoid sinus: volume assessment by helical CT scanning. AJNR Am J Neuroradiol 2000;21:179-82.
  • 20. Farias Gomes A, de Oliveira Gamba T, Yamasaki MC, Groppo FC, Haiter Neto F, Possobon RF. Development and validation of a formula based on maxillary sinus measurements as a tool for sex estimation: a cone beam computed tomography study. Int J Legal Med 2019;133:1241-1249.
  • 21. Radulesco T, Michel J, Mancini J, Dessi P, Adalian P. Sex Estimation from Human Cranium: Forensic and Anthropological Interest of Maxillary Sinus Volumes. J Forensic Sci 2018;63:805-808.
  • 22. Jun BC, Song SW, Park CS, Lee DH, Cho KJ, Cho JH, et al. The analysis of maxillary sinus aeration according to aging process; volume assessment by 3-dimensional reconstruction by high-resolutional CT scanning. Otolaryngol Head Neck Surg 2005;132:429–34.
  • 23. Möhlhenrich SC, Heussen N, Peters F, Steiner T, Hölzle F, Modabber A. Is the Maxillary Sinus Really Suitable in Sex Determination? A Three-Dimensional Analysis of Maxillary Sinus Volume and Surface Depending on Sex and Dentition. J Craniofac Surg 2015;26:e723-6.
  • 24. Ural A, Songu M, Adibelli ZH, Candan H. A stereological study on the correlation of inferior turbinate hypertrophy and paranasal sinus disease. Eur Arch Otorhinolaryngol 2014;271:2437-41.
  • 25. Koç A, Sezgin ÖS, Kayıpmaz S. Comparing different planimetric methods on volumetric estimations by using cone beam computed tomography. Radiol Med 2020;125:398-405. https://doi.org/10.1007/s11547-019-01131-8

ARE MAXILLARY AND SPHENOID SINUS VOLUMES PREDICTORS OF GENDER AND AGE? A CONE BEAM COMPUTED TOMOGRAPHY STUDY

Yıl 2020, Cilt: 23 Sayı: 4, 348 - 355, 31.12.2020
https://doi.org/10.7126/cumudj.795870

Öz

Objectives:This study aimed to analyze the role of maxillary sinus (MS) and sphenoid sinus (SS) volumes for determining gender and age.
Materials and methods: This retrospective study enrolled the cone beam computed tomography (CBCT) images of 164 MS and 164 SS belonging to 82 patients (40 females and 42 males). Right MS, left MS, right SS, left SS, total SS and total MS volumes were estimated. In order to analyze the role of the volumes for determining age and gender, independent samples test, logistic regression analysis, and Pearson correlation analysis were performed.
Results: Males had greater right SS, average SS, and total SS volumes than females (p=0.007, p=0.013, p=0.013, respectively). Right SS volume had the best predictive power (65.9%) for determining gender, and the only significant regression model could be modeled using this parameter. No significant correlation was found between age and any volume (p>0.05).
Conclusions: It was concluded that SS volume is a valuable tool for determining gender whereas neither MS nor SS were decisive in determining age. A simpler gender determination is possible with our regression formula incorporating the SS dimension. There is a need for further studies analyzing the role of paranasal sinus volumes and formulations ensuring a simple estimation for determining age and gender among different patient populations.

Kaynakça

  • 1. Przystańska A, Rewekant A, Sroka A, Gedrange T, Ekkert M, Jończyk-Potoczna K, et al. Sexual dimorphism of maxillary sinuses in children and adolescents - A retrospective CT study. Ann Anat 2019;11:151437. https://doi.org/10.1016/j.aanat.2019.151437
  • 2. Cohen O, Warman M, Fried M, Shoffel-Havakuk H, Adi M, Halperin D, Lahav Y. Volumetric analysis of the maxillary, sphenoid and frontal sinuses: A comparative computerized tomography based study. Auris Nasus Larynx 2018;45:96-102.
  • 3. Rani SU, Rao GV, Kumar DR, Sravya T, Sivaranjani Y, Kumar MP. Age and gender assessment through three-dimensional morphometric analysis of maxillary sinus using magnetic resonance imaging. J Forensic Dent Sci 2017;9:46.
  • 4. Uthman AT, Al-Rawi NH, Al-Naaimi AS, Al-Timimi JF. Evaluation of maxillary sinus dimensions in gender determination using helical CT scanning. J Forensic Sci 2011;56:403-8.
  • 5. Cappella A, Gibelli D, Cellina M, Mazzarelli D, Oliva AG, De Angelis D, et al. Three-dimensional analysis of sphenoid sinus uniqueness for assessing personal identification: a novel method based on 3D-3D superimposition. Int J Legal Med 2019;133:1895-1901.
  • 6. Wanzeler AMV, Alves-Júnior SM, Ayres L, da Costa Prestes MC, Gomes JT, Tuji FM. Sex estimation using paranasal sinus discriminant analysis: a new approach via cone beam computerized tomography volume analysis. Int J Legal Med 2019;133:1977-1984.
  • 7. Barghouth G, Prior JO, Lepori D, Duvoisin B, Schnyder P, Gudinchet F. Paranasal sinuses in children: size evaluation of maxillary, sphenoid, and frontal sinuses by magnetic resonance imaging and proposal of volume index percentile curves. Eur Radiol 2002;12:1451-8.
  • 8. Değermenci M, Ertekin T, Ülger H, Acer N, Coşkun A. The Age-Related Development of Maxillary Sinus in Children. J Craniofac Surg 2016;27:e38-44.
  • 9. Oliveira JM, Alonso MB, de Sousa E Tucunduva MJ, Fuziy A, Scocate AC, Costa AL. Volumetric study of sphenoid sinuses: anatomical analysis in helical computed tomography. Surg Radiol Anat 2017;39:367-374.
  • 10. Özer CM, Atalar K, Öz II, Toprak S, Barut Ç. Sphenoid Sinus in Relation to Age, Gender, and Cephalometric Indices. J Craniofac Surg 2018;29:2319-2326.
  • 11. Luo H, Wang J, Zhang S, Mi C. The application of frontal sinus index and frontal sinus area in sex estimation based on lateral cephalograms among Han nationality adults in Xinjiang. J Forensic Leg Med 2018;56:1-4.
  • 12. Sidhu R, Chandra S, Devi P, Taneja N, Sah K, Kaur N. Forensic importance of maxillary sinus in gender determination: A morphometric analysis from Western Uttar Pradesh, India. Eur J Gen Dent 2014;3:53-6
  • 13. Bangi BB, Ginjupally U, Nadendla LK, Vadla B. 3D evaluation of maxillary sinus using computed tomography: A Sexual dimorphic study. Int J Dent 2017;2017:9017078.
  • 14. Ariji Y, Kuroki T, Moriguchi S, Ariji E, Kanda S. Age changes in the volume of the human maxillary sinus: a study using computed tomography. Dentomaxillofac Radiol 1994;23:163-8.
  • 15. Koppe T, Nagai H. Growth pattern of the maxillary sinus in the Japanese macaque (Macaca fuscata): reflections on the structural role of the paranasal sinuses. J Anat 1997;190:533-44.
  • 16. Kajoak SA, Ayad CE, Abdalla EA, Mohammed MN, Yousif MO, Mohammed AM. Characterization of sphenoid sinuses for Sudanese population using computed tomography. Glob J Health Sci 2013;6:135-41.
  • 17. Oliveira JX, Perrella A, Santos KC, et al. Accuracy assessment of human sphnoidal sinus volume and area measure and its relationship with sexual dimorphism using the 3D-CT. J. Health Sci Inst 2009;27:390–3.
  • 18. Nejaim Y, Farias Gomes A, Valadares CV, Costa ED, Peroni LV, Groppo FC, et al. Evaluation of volume of the sphenoid sinus according to sex, facial type, skeletal class, and presence of a septum: a cone-beam computed tomographic study. Br J Oral Maxillofac Surg 2019;57:336-340.
  • 19. Yonetsu K, Watanabe M, Nakamura T. Age-related expansion and reduction in aeration of the sphenoid sinus: volume assessment by helical CT scanning. AJNR Am J Neuroradiol 2000;21:179-82.
  • 20. Farias Gomes A, de Oliveira Gamba T, Yamasaki MC, Groppo FC, Haiter Neto F, Possobon RF. Development and validation of a formula based on maxillary sinus measurements as a tool for sex estimation: a cone beam computed tomography study. Int J Legal Med 2019;133:1241-1249.
  • 21. Radulesco T, Michel J, Mancini J, Dessi P, Adalian P. Sex Estimation from Human Cranium: Forensic and Anthropological Interest of Maxillary Sinus Volumes. J Forensic Sci 2018;63:805-808.
  • 22. Jun BC, Song SW, Park CS, Lee DH, Cho KJ, Cho JH, et al. The analysis of maxillary sinus aeration according to aging process; volume assessment by 3-dimensional reconstruction by high-resolutional CT scanning. Otolaryngol Head Neck Surg 2005;132:429–34.
  • 23. Möhlhenrich SC, Heussen N, Peters F, Steiner T, Hölzle F, Modabber A. Is the Maxillary Sinus Really Suitable in Sex Determination? A Three-Dimensional Analysis of Maxillary Sinus Volume and Surface Depending on Sex and Dentition. J Craniofac Surg 2015;26:e723-6.
  • 24. Ural A, Songu M, Adibelli ZH, Candan H. A stereological study on the correlation of inferior turbinate hypertrophy and paranasal sinus disease. Eur Arch Otorhinolaryngol 2014;271:2437-41.
  • 25. Koç A, Sezgin ÖS, Kayıpmaz S. Comparing different planimetric methods on volumetric estimations by using cone beam computed tomography. Radiol Med 2020;125:398-405. https://doi.org/10.1007/s11547-019-01131-8
Toplam 25 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Sağlık Kurumları Yönetimi
Bölüm Original Research Articles
Yazarlar

Alaettin Koç 0000-0001-9984-6900

Yayımlanma Tarihi 31 Aralık 2020
Gönderilme Tarihi 16 Eylül 2020
Yayımlandığı Sayı Yıl 2020Cilt: 23 Sayı: 4

Kaynak Göster

EndNote Koç A (01 Aralık 2020) ARE MAXILLARY AND SPHENOID SINUS VOLUMES PREDICTORS OF GENDER AND AGE? A CONE BEAM COMPUTED TOMOGRAPHY STUDY. Cumhuriyet Dental Journal 23 4 348–355.

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