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Article in English | MEDLINE | ID: mdl-21778080

ABSTRACT

OBJECTIVE: The aim of this study was to compare the performance of cone-beam computerized tomography (CBCT) with multislice CT (MSCT) and single photon emission CT (SPECT) in the detection of bone invasion from oral malignancies. STUDY DESIGN: In this prospective investigation, 77 patients with histologically proven malignancy of the oral cavity received MSCT, CBCT, and SPECT imaging of the head presurgically. Radiologic evaluations were compared with histopathologic examinations of the resected tumor specimens. Receiver operating characteristic (ROC) analysis as well as the sensitivity, specificity, and positive and negative predictive values were calculated. RESULTS: The sensitivity, specificity, positive predictive value, and negative predictive value for MSCT were 0.8, 1.0, 1.0, and 0.75, respectively; for CBCT 0.92, 0.965, 0.98, and 0.875; and for SPECT 0.91, 0.4, 0.7, and 0.75. ROC analysis showed area under the curve values of 0.894 (95% confidence interval [CI] 0.806-0.982) for MSCT; 0.931 (95% CI 0.835-1.000) for CBCT, and 0.716 (95% CI 0.566-0.866) for SPECT. CONCLUSION: CBCT is accurate in predicting malignancies' bone involvement and can compete with MSCT and SPECT in detecting bone invasion in patients with oral malignancies.


Subject(s)
Mandibular Neoplasms/diagnostic imaging , Maxillary Neoplasms/diagnostic imaging , Mouth Neoplasms/pathology , Neoplasm Invasiveness/diagnostic imaging , Tomography, Emission-Computed/instrumentation , Adult , Aged , Aged, 80 and over , Carcinoma/diagnostic imaging , Carcinoma/pathology , Cone-Beam Computed Tomography , Humans , Male , Mandibular Neoplasms/pathology , Maxillary Neoplasms/pathology , Middle Aged , Mouth Neoplasms/diagnostic imaging , Multidetector Computed Tomography , Neoplasm Staging/instrumentation , Osteosarcoma/diagnostic imaging , Osteosarcoma/pathology , Prospective Studies , Reproducibility of Results , Sensitivity and Specificity , Tomography, Emission-Computed/methods , Tomography, Emission-Computed, Single-Photon
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