文献
J-GLOBAL ID:201502295317703251
整理番号:15A0581138 下顎臼歯部分の人工歯槽骨欠損に対する診断精度に関するROC解析によるコーンビームCTと多検出器列CT間の比較
Comparison between cone-beam CT and multidetector-row CT by ROC analysis regarding diagnostic accuracy for artificial alveolar bone defects in the mandibular molar region
- Arai Y, Tammisalo E, Iwai K, Hashimoto K, Shinoda K. Development of a compact computed tomographic apparatus for dental use. Dentomaxillofac Radiol. 1999;28:245-8.
- Gulsahi A, Ates U, Tirali RE, Cehreli SB. Use of cone-beam computed tomography in diagnosis of an otherwise undetected periapical lesion in an anomalous tooth. Oral Radiol. 2014;30:111-4. doi: 10. 1007/ s11282-013-0130-8.
- Scarfe WC, Farman AG, Sukovic P. Clinical applications of cone-beam computed tomography in dental practice. J Can Dent Assoc. 2006;72:75-80.
- Honda K, Arai Y, Kashima M, Takano Y, Sawada K, Ejima K, et al. Evaluation of the usefulness of the limited cone-beam CT (3DX) in the assessment of the thickness of the roof of the glenoid fossa of the temporomandibular joint. Dentomaxillofac Radiol. 2004;33:391-5. doi: 10. 1259/ dmfr/ 54316470.
- Seeram E. Computed tomography: physical principles, clinical applications, and quality control. 3rd ed. St. Louis: Saunders Elsevier; 2009.
- Rosset A, Spadola L. OsiriX: an open-source software for navigating in multidimensional DICOM images. J Digit Imaging. 2004;17:205-16. doi: 10. 1007/ s10278-004-1014-6.
- Kalra MK, Maher MM, D’Souza R, Saini S. Multidetector computed tomography technology: current status and emerging developments. J Comput Assist Tomogr. 2004;28:S2-6.
- Liang X, Jacobs R, Hassan B, Li L, Pauwels R, Corpas L, et al. A comparative evaluation of cone beam computed tomography (CBCT) and multi-slice CT (MSCT). Part I. on subjective image quality. Eur J Radiol. 2010;75:265-9. doi: 10. 1016/ j. ejrad. 2009. 03. 042.
- Liang X, Lambrichts I, Sun Y, Denis K, Hassan B, Li L, et al. A comparative evaluation of cone beam computed tomography (CBCT) and multi-slice CT (MSCT). Part II: on 3D model accuracy. Eur J Radiol. 2010;75:270-4. doi: 10. 1016/ j. ejrad. 2009. 04. 016.
- Metz CE. ROC methodology in radiologic imaging. Invest Radiol. 1986;21:720-33.
- Rockette HE, Gur D, Metz CE. The use of continuous and discrete confidence judgments in receiver operating characteristic studies of diagnostic imaging techniques. Invest Radiol. 1992;27:169-72.
- Imhof H, Czerny C, Dirisamer A. Head and neck imaging with MDCT. Eur J Radiol. 2003;45:S23-31.
- Bonel HM, Jäger L, Frei KA, Galiano S, Srivastav SK, Flohr T, et al. Optimization of MDCT of the wrist to achieve diagnostic image quality with minimum radiation exposure. AJR Am J Roentgenol. 2005;185:647-54.
- McCollough CH, Primak AN, Braun N, Kofler J, Yu L, Christner J. Strategies for reducing radiation dose in CT. Radiol Clin North Am. 2009;47:27-40.
- Hsieh J. Image quality. In: Seweram E, editor. Computed tomography: physical principles, clinical applications, and quality control. 3rd ed. St. Louis: Saunders Elsevier; 2008. p. 188-217.
- Wojciechowski W, Urbanik A, Kownacki P, Kownacki S, Sowa A. Optimisation of the CT parameters with evaluation of MDCT double-scan images in the planning of the dental implant treatment. Pol J Radiol. 2009;74:69-76.
- Fahrig R, Moreau M, Holdsworth DW. Three-dimensional computed tomographic reconstruction using a C-arm mounted XRII: correction of image intensifier distortion. Med Phys. 1997;24:1097-106.
- Scarfe WC, Farman AG. Cone-beam computed tomography: volume acquisition. In: White SC, Pharoah MJ, editors. Oral radiology: principles and interpretation. 3rd ed. St. Louis: Elsevier Health Sciences; 2013. p. 185-98.
- Seweram E. Multislice spiral/helical computed tomography: physical principles and instrumentation. In: Seweram E, editor. Computed tomography: physical principles, clinical applications, and quality control. 3rd ed. St. Louis: Saunders Elsevier; 2008. p. 226-304.
- Baba R, Konno Y, Ueda K, Ikeda S. Comparison of flat-panel detector and image-intensifier detector for cone-beam CT. Comput Med Imaging Graph. 2002;26:153-8.
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