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DOI :10.17096/jiufd.00289   IUP :10.17096/jiufd.00289    Tam Metin (PDF)

Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları

Elluru VenkateshSnehal Venkatesh Elluru

Konik ışınlı bilgisayarlı tomografi cihazlarının (KIBT) kullanıma sunulması oral ve maksillofasiyal radyoloji uygulamalarının yönünü değiştiren bir gelişmedir. KIBT, medikal tomografi cihazları ile karşılaştırıldığında daha az yer kaplayan, daha ucuz ve düşük iyonizan radyasyon dozu uygulayan bir sistem olduğundan dişhekimliği alanında hızla kabul görmüştür. KIBT kullanılarak aynı medikal tomografilerde olduğu gibi maksillofasiyal bölgenin 3 boyutlu ve minimum distorsiyonlu görüntüleri elde edilebilir. Bu makalenin amacı KIBT teknolojisinin temel özelliklerini incelemek ve oral ve maksillofasiyal bölgede hangi alanlarda kullanılabileceğini görsel veriler üzerinden değerlendirmektir.

DOI :10.17096/jiufd.00289   IUP :10.17096/jiufd.00289    Tam Metin (PDF)

CONE BEAM COMPUTED TOMOGRAPHY: BASICS AND APPLICATIONS IN DENTISTRY

Elluru VenkateshSnehal Venkatesh Elluru

The introduction of cone beam computed tomography (CBCT) devices, changed the way oral and maxillofacial radiology is practiced. CBCT was embraced into the dental settings very rapidly due to its compact size, low cost, low ionizing radiation exposure when compared to medical computed tomography. Alike medical CT, 3 dimensional evaluation of the maxillofacial region with minimal distortion is offered by the CBCT. This article provides an overview of basics of CBCT technology and reviews the specific application of CBCT technology to oral and maxillofacial region with few illustrations. 
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Referanslar

  • • Goldman LW. Principles of ct and ct technology. J Nucl Med Technol 2007;35(3):115-128; quiz 129-130. google scholar
  • • Arai Y, Tammisalo E, Iwai K, Hashimoto K, Shinoda K. Development of a compact computed tomographic apparatus for dental use. Dentomaxillofac Radiol 1999;28(4):245-248. google scholar
  • • Mozzo P, Procacci C, Tacconi A, Martini PT, Andreis IA. A new volumetric ct machine for dental imaging based on the cone-beam technique: Preliminary results. Eur Radiol 1998;8(9):1558-1564. google scholar
  • • Feldkamp LA, Davis LC, Kress JW. Practical cone-beam algorithm. J Opt Soc Am 1984;1(6):612-619. google scholar
  • • Danforth RA, Miles DA. Cone beam volume imaging (cbvi): 3d applications for dentistry. Irish Dent 2007;10(9):14-18. google scholar
  • • Howerton WB, Jr., Mora MA. Advancements in digital imaging: What is new and on the horizon? J Am Dent Assoc 2008;139 Suppl:20S-24S. google scholar
  • • Miracle AC, Mukherji SK. Conebeam ct of the head and neck, part 2: Clinical applications. AJNR Am J Neuroradiol 2009;30(7):1285-1292. google scholar
  • • European Academy of Dental and Maxillofacial Radiol¬ogy. Basic principles for use of dental cone beam CT. http://eadmfr.eu/sites/default/files/donwloads/Basic_Principles_for_Use_of_Dental_Cone_Beam_CT.pdf Accessed: February 20, 2017. google scholar
  • • Scarfe WC, Farman AG, Sukovic P. Clinical applications of cone-beam computed tomography in dental practice. J Can Dent Assoc 2006;72(1):75-80. google scholar
  • • White SC, Pharoah M. Oral radiology principles and interpretation. St. Louis: Mosby Elsevier, 2014, 199-212. google scholar
  • • Gutierrez D, Monnin P, Valley JF, Verdun FR. A strategy to qualify the performance of radiographic monitors. Radiat Prot Dosimetry 2005;114(1-3):192-197. google scholar
  • • Palomo L, Palomo JM. Cone beam ct for diagnosis and treatment planning in trauma cases. Dent Clin North Am 2009;53(4):717-727, vi-vii. google scholar
  • • Razavi T, Palmer RM, Davies J, Wilson R, Palmer PJ. Accuracy of measuring the cortical bone thickness adjacent to dental implants using cone beam computed tomography. Clin Oral Implants Res 2010;21(7):718-725. google scholar
  • • Ludlow JB, Davies-Ludlow LE, Brooks SL. Dosimetry of two extraoral direct digital imaging devices: Newtom cone beam ct and orthophos plus ds panoramic unit. Dentomaxillofac Radiol 2003;32(4):229-234. google scholar
  • • Ludlow JB, Davies-Ludlow LE, Brooks SL, Howerton WB. Dosimetry of 3 cbct devices for oral and maxillofacial radiology: Cb mercuray, newtom 3g and i-cat. Dentomaxillofac Radiol 2006;35(4):219-226. google scholar
  • • Ludlow JB, Davies-Ludlow LL, Mol A. Dosimetry of recently introduced cbct units for oral and maxillofacial radiology. Beijing, China: Proceedings of the 16th International Congress of Dentomaxillofacial Radiology, 26-30 June 2007, 97. google scholar
  • • Mah JK, Danforth RA, Bumann A, Hatcher D. Radiation absorbed in maxillofacial imaging with a new dental computed tomography device. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2003;96(4):508-513. google scholar
  • • Schulze D, Heiland M, Thurmann H, Adam G. Radiation exposure during midfacial imaging using 4- and 16-slice computed tomography, cone beam computed tomography systems and conventional radiography. Dentomaxillofac Radiol 2004;33(2):83-86. google scholar
  • • Scarfe WC, Farman AG. What is cone-beam ct and how does it work? Dent Clin North Am 2008;52(4):707-730, v. google scholar
  • • Cohnen M, Kemper J, Mobes O, Pawelzik J, Modder U. Radiation dose in dental radiology. Eur Radiol 2002;12(3):634-637. google scholar
  • • Schulze R, Heil U, Gross D, Bruellmann DD, Dranischnikow E, Schwanecke U, Schoemer E. Artefacts in cbct: A review. Dentomaxillofac Radiol 2011;40(5):265-273. google scholar
  • • Endo M, Tsunoo T, Nakamori N, Yoshida K. Effect of scattered radiation on image noise in cone beam ct. Med Phys 2001;28(4):469-474. google scholar
  • • Farman AG. Guest editorial--self-referral: An ethical concern with respect to multidimensional imaging in dentistry? J Appl Oral Sci 2009;17(5): google scholar
  • • Wiegert J, Bertram M, Schafer D, et al. Soft tissue contrast resolution within the head of human cadaver by means of flat detector based cone-beam ct. Proc SPIE 2004;5368(6):330-337. google scholar
  • • Almog DM, LaMar J, LaMar FR, LaMar F. Cone beam computerized tomography-based dental imaging for implant planning and surgical guidance, part 1: Single implant in the mandibular molar region. J Oral Implantol 2006;32(2):77-81. google scholar
  • • Tyndall DA, Price JB, Tetradis S, Ganz SD, Hildebolt C, Scarfe WC, American Academy of O, Maxillofacial R. Position statement of the american academy of oral and maxillofacial radiology on selection criteria for the use of radiology in dental implantology with emphasis on cone beam computed tomography. Oral Surg Oral Med Oral Pathol Oral Radiol 2012;113(6):817-826. google scholar
  • • Yajima A, Otonari-Yamamoto M, Sano T, Hayakawa Y, Otonari T, Tanabe K, Wakoh M, Mizuta S, Yonezu H, Nakagawa K, Yajima Y. Cone-beam ct (cb throne) applied to dentomaxillofacial region. Bull Tokyo Dent Coll 2006;47(3):133-141. google scholar
  • • Tischler M. In-office cone beam computerized tomography: Technology review and clinical examples. Dent Today 2008;27(6):102, 104, 106. google scholar
  • • Nickenig HJ, Eitner S. Reliability of implant placement after virtual planning of implant positions using cone beam ct data and surgical (guide) templates. J Craniomaxillofac Surg 2007;35(4-5):207-211. google scholar
  • • Cevidanes LH, Bailey LJ, Tucker GR, Jr., Styner MA, Mol A, Phillips CL, Proffit WR, Turvey T. Superimposition of 3d cone-beam ct models of orthognathic surgery patients. Dentomaxillofac Radiol 2005;34(6):369-375. google scholar
  • • Heiland M, Schulze D, Rother U, Schmelzle R. Postoperative imaging of zygomaticomaxillary complex fractures using digital volume tomography. J Oral Maxillofac Surg 2004;62(11):1387-1391. google scholar
  • • Pohlenz P, Blessmann M, Blake F, Heinrich S, Schmelzle R, Heiland M. Clinical indications and perspectives for intraoperative cone-beam computed tomography in oral and maxillofacial surgery. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2007;103(3):412-417. google scholar
  • • Pohlenz P, Blessmann M, Blake F, Gbara A, Schmelzle R, Heiland M. Major mandibular surgical procedures as an indication for intraoperative imaging. J Oral Maxillofac Surg 2008;66(2):324-329. google scholar
  • • Fullmer JM, Scarfe WC, Kushner GM, Alpert B, Farman AG. Cone beam computed tomographic findings in refractory chronic suppurative osteomyelitis of the mandible. Br J Oral Maxillofac Surg 2007;45(5):364-371. google scholar
  • • Tetradis S, Anstey P, Graff-Radford S. Cone beam computed tomography in the diagnosis of dental disease. J Calif Dent Assoc 2010;38(1):27-32. google scholar
  • • Liu DG, Zhang WL, Zhang ZY, Wu YT, Ma XC. Localization of impacted maxillary canines and observation of adjacent incisor resorption with cone-beam computed tomography. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2008;105(1):91-98 google scholar
  • • Pawelzik J, Cohnen M, Willers R, Becker J. A comparison of conventional panoramic radiographs with volumetric computed tomography images in the preoperative assessment of impacted mandibular third molars. J Oral Maxillofac Surg 2002;60(9):979-984. google scholar
  • • Hamada Y, Kondoh T, Noguchi K, Iino M, Isono H, Ishii H, Mishima A, Kobayashi K, Seto K. Application of limited cone beam computed tomography to clinical assessment of alveolar bone grafting: A preliminary report. Cleft Palate Craniofac J 2005;42(2):128-137. google scholar
  • • Kumar V, Pass B, Guttenberg SA, Ludlow J, Emery RW, Tyndall DA, Padilla RJ. Bisphosphonate-related osteonecrosis of the jaws: A report of three cases demonstrating variability in outcomes and morbidity. J Am Dent Assoc 2007;138(5):602-609. google scholar
  • • American Dental Association Council on Scientific A. The use of cone-beam computed tomography in dentistry: An advisory statement from the american dental association council on scientific affairs. J Am Dent Assoc 2012;143(8):899-902. google scholar
  • • Ogawa T, Enciso R, Shintaku WH, Clark GT. Evaluation of cross-section airway configuration of obstructive sleep apnea. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2007;103(1):102-108. google scholar
  • • Aboudara CA, Hatcher D, Nielsen IL, Miller A. A three-dimensional evaluation of the upper airway in adolescents. Orthod Craniofac Res 2003;6 Suppl 1:173-175. google scholar
  • • Harrell WE Jr. Three-dimensional diagnosis and treatment planning: The use of 3d facial imaging and 3d cone beam CT in orthodontics and dentistry. Australasian Dent Pract 2007;18(4):102-113. google scholar
  • • Kapila S, Conley RS, Harrell WE, Jr. The current status of cone beam computed tomography imaging in orthodontics. Dentomaxillofac Radiol 2011;40(1):24-34. google scholar
  • • Peck JL, Sameshima GT, Miller A, Worth P, Hatcher DC. Mesiodistal root angulation using panoramic and cone beam CT. Angle Orthod 2007;77(2):206-213. google scholar
  • • Kim SH, Choi YS, Hwang EH, Chung KR, Kook YA, Nelson G. Surgical positioning of orthodontic mini-implants with guides fabricated on models replicated with cone-beam computed tomography. Am J Orthod Dentofacial Orthop 2007;131(4 Suppl):S82-89. google scholar
  • • Kim SH, Kang JM, Choi B, Nelson G. Clinical application of a stereolithographic surgical guide for simple positioning of orthodontic mini-implants. World J Orthod 2008;9(4):371-382. google scholar
  • • Tsiklakis K, Syriopoulos K, Stamatakis HC. Radiographic examination of the temporomandibular joint using cone beam computed tomography. Dentomaxillofac Radiol 2004;33(3):196-201. google scholar
  • • Honda K, Matumoto K, Kashima M, Takano Y, Kawashima S, Arai Y. Single air contrast arthrography for temporomandibular joint disorder using limited cone beam computed tomography for dental use. Dentomaxillofac Radiol 2004;33(4):271-273. google scholar
  • • Kijima N, Honda K, Kuroki Y, Sakabe J, Ejima K, Nakajima I. Relationship between patient characteristics, mandibular head morphology and thickness of the roof of the glenoid fossa in symptomatic temporomandibular joints. Dentomaxillofac Radiol 2007;36(5):277-281. google scholar
  • • Honda K, Larheim TA, Johannessen S, Arai Y, Shinoda K, Westesson PL. Ortho cubic super-high resolution computed tomography: A new radiographic technique with application to the temporomandibular joint. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2001;91(2):239-243. google scholar
  • • Sakabe R, Sakabe J, Kuroki Y, Nakajima I, Kijima N, Honda K. Evaluation of temporomandibular disorders in children using limited cone-beam computed tomography: A case report. J Clin Pediatr Dent 2006;31(1):14-16. google scholar
  • • Cotton TP, Geisler TM, Holden DT, Schwartz SA, Schindler WG. Endodontic applications of cone-beam volumetric tomography. J Endod 2007;33(9):1121-1132. google scholar
  • • Nakata K, Naitoh M, Izumi M, Inamoto K, Ariji E, Nakamura H. Effectiveness of dental computed tomography in diagnostic imaging of periradicular lesion of each root of a multirooted tooth: A case report. J Endod 2006;32(6):583-587. google scholar
  • • Tyndall DA, Rathore S. Cone-beam ct diagnostic applications: Caries, periodontal bone assessment, and endodontic applications. Dent Clin North Am 2008;52(4):825-841, vii. google scholar
  • • Ozer SY. Detection of vertical root fractures of different thicknesses in endodontically enlarged teeth by cone beam computed tomography versus digital radiography. J Endod 2010;36(7):1245-1249. google scholar
  • • Nagaraja S, Sreenivasa Murthy BV. Ct evaluation of canal preparation using rotary and hand ni-ti instruments: An in vitro study. J Conserv Dent 2010;13(1):16-22. google scholar
  • • Siraci E, Cem Gungor H, Taner B, Cehreli ZC. Buccal and palatal talon cusps with pulp extensions on a supernumerary primary tooth. Dentomaxillofac Radiol 2006;35(6):469-472. google scholar
  • • Vandenberghe B, Jacobs R, Yang J. Diagnostic validity (or acuity) of 2d ccd versus 3d cbct-images for assessing periodontal breakdown. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 2007;104(3):395-401. google scholar
  • • Misch KA, Yi ES, Sarment DP. Accuracy of cone beam computed tomography for periodontal defect measurements. J Periodontol 2006;77(7):1261-1266. google scholar
  • • Ito K, Yoshinuma N, Goke E, Arai Y, Shinoda K. Clinical application of a new compact computed tomography system for evaluating the outcome of regenerative therapy: A case report. J Periodontol 2001;72(5):696-702. google scholar
  • • Yang F, Jacobs R, Willems G. Dental age estimation through volume matching of teeth imaged by cone-beam ct. Forensic Sci Int 2006;159 Suppl 1:S78-83. google scholar
  • • Abou-ElFetouh A, Barakat A, Abdel-Ghany K. Computer-guided rapid-prototyped templates for segmental mandibular osteotomies: A preliminary report. Int J Med Robot 2011;7(2):187-192. google scholar
  • • Jayaratne YS, Zwahlen RA, Lo J, Tam SC, Cheung LK. Computer-aided maxillofacial surgery: An update. Surg Innov 2010;17(3):217-225. google scholar
  • • D'Urso PS, Barker TM, Earwaker WJ, Bruce LJ, Atkinson RL, Lanigan MW, Arvier JF, Effeney DJ. Stereolithographic biomodelling in cranio-maxillofacial surgery: A prospective trial. J Craniomaxillofac Surg 1999;27(1):30-37. google scholar

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DIŞA AKTAR



APA

Venkatesh, E., & Elluru, S.V. (2017). Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları. European Oral Research, 51(3), 102-121. https://doi.org/10.17096/jiufd.00289


AMA

Venkatesh E, Elluru S V. Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları. European Oral Research. 2017;51(3):102-121. https://doi.org/10.17096/jiufd.00289


ABNT

Venkatesh, E.; Elluru, S.V. Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları. European Oral Research, [Publisher Location], v. 51, n. 3, p. 102-121, 2017.


Chicago: Author-Date Style

Venkatesh, Elluru, and Snehal Venkatesh Elluru. 2017. “Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları.” European Oral Research 51, no. 3: 102-121. https://doi.org/10.17096/jiufd.00289


Chicago: Humanities Style

Venkatesh, Elluru, and Snehal Venkatesh Elluru. Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları.” European Oral Research 51, no. 3 (Apr. 2024): 102-121. https://doi.org/10.17096/jiufd.00289


Harvard: Australian Style

Venkatesh, E & Elluru, SV 2017, 'Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları', European Oral Research, vol. 51, no. 3, pp. 102-121, viewed 19 Apr. 2024, https://doi.org/10.17096/jiufd.00289


Harvard: Author-Date Style

Venkatesh, E. and Elluru, S.V. (2017) ‘Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları’, European Oral Research, 51(3), pp. 102-121. https://doi.org/10.17096/jiufd.00289 (19 Apr. 2024).


MLA

Venkatesh, Elluru, and Snehal Venkatesh Elluru. Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları.” European Oral Research, vol. 51, no. 3, 2017, pp. 102-121. [Database Container], https://doi.org/10.17096/jiufd.00289


Vancouver

Venkatesh E, Elluru SV. Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları. European Oral Research [Internet]. 19 Apr. 2024 [cited 19 Apr. 2024];51(3):102-121. Available from: https://doi.org/10.17096/jiufd.00289 doi: 10.17096/jiufd.00289


ISNAD

Venkatesh, Elluru - Elluru, SnehalVenkatesh. Konik Işınlı Bilgisayarlı Tomografinin Temel Kavramları ve Dişhekimliğindeki Kullanım Alanları”. European Oral Research 51/3 (Apr. 2024): 102-121. https://doi.org/10.17096/jiufd.00289



ZAMAN ÇİZELGESİ


Gönderim31.07.2017
Kabul11.09.2017

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