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1.
Chinese Journal of Health Management ; (6): 47-51, 2023.
Article in Chinese | WPRIM | ID: wpr-993644

ABSTRACT

Objective:To observe the size changes under ultrasound of 4C type thyroid micronodules classified by 2020 Chinese Thyroid Imaging Reporting and Data System (C-TIRADS)during follow-up.Methods:In this cross-sectional study, the data of thyroid ultrasonography in physical examination center in the Affiliated Zhongshan Hospital of Dalian University between December 2017 and December 2021 were retrospectively included, thyroid nodules were classified according to C-TIRADS, to observe the changes by ultrasound of maximum diameter and volume of 4C type thyroid micronodules during follow-up.Results:A total of 102 subjects receiving physical examinations with 103 thyroid micronodules were enrolled in this study. The maximum diameter and volume of thyroid micronodules at initial examination was 5.0 (4.0, 7.0) mm and 52.5 (25.2, 113.4) mm 3 respectively, and it was 6.0 (4.0,7.0) mm、65.6 (25.2,147.0) mm 3 at the last examination, respectively. Of the thyroid micronodules, 79 (76.7%) remained stable, 14 (13.6%) magnified and 10 (9.7%) shrunk during the follow-up. The cervical lymph nodes in all physical examiners were normal. There were significant changes in the maximum diameter and volume in the thyroid micronodules between the initial and last examination in subjects whose micronodules shrunk or magnified during the follow-up (all P<0.05). Conclusion:Size of most C-TIRADS 4C thyroid micronodules remains stable or even decreases during ultrasound follow-up observation, for such thyroid nodules, follow-up observation appears to be a safe and feasible way to postpone surgery.

2.
Chinese Journal of Health Management ; (6): 175-179, 2022.
Article in Chinese | WPRIM | ID: wpr-932961

ABSTRACT

Objective:To investigate the diagnostic efficiency of the 2020 Chinese Thyroid Imaging Reporting and Data System (C-TIRADS) and the 2017 American College of Radiology Thyroid Imaging Reporting and Data System (ACR-TIRADS) in the diagnosis of benign and malignant thyroid nodules.Methods:A retrospective analysis of the two-dimensional ultrasound image results of 324 thyroid nodules in 289 patients with thyroid nodules and thyroid nodules were performed in the physical examination of the Health Management Department of the Guangdong Second Provincial General Hospital from January 2018 to January 2019. A superficial professional doctor with a senior professional title simultaneously uses the C-TIRADS and ACR-TIRADS methods to evaluate the above nodules. The results are all pathologically referenced for the χ2 test and the receiver operating characteristic curve is drawn. Results:The sensitivity of C-TIRADS in diagnosing benign and malignant thyroid nodules was 81.90%, specificity was 97.72%, accuracy was 92.59%, negative predictive value was 91.85%, positive predictive value was 84.51%; ACR-TIRADS diagnosis The sensitivity of benign and malignant thyroid nodules was 59.05%, specificity was 99.54%, accuracy was 86.42%, negative predictive value was 83.52%, and positive predictive value was 98.41%. The area under the ROC curve was 0.958 and 0.935( Z=2.31 P=0.021). Conclusion:C-TIRADS classification based on counting method is better than ACR-TIRADS classification based on sub-method in the diagnosis of thyroid nodules. It has better efficacy and is more suitable for the current status of diagnosis and treatment of thyroid nodules in China.

3.
Chinese Journal of Postgraduates of Medicine ; (36): 422-427, 2022.
Article in Chinese | WPRIM | ID: wpr-931183

ABSTRACT

Objective:To investigate the diagnostic value of Chinese-thyroid imaging reporting and data system (C-TIRADS) combined with shear wave elastography (SWE) in thyroid microcarcinoma.Methods:The clinical data of 270 patients (367 nodules) who underwent thyroid ultrasound examination and confirmed by pathology from January 2019 to June 2021 in the Affiliated Hospital of Jining Medical University were analyzed retrospectively. All patients were assisted by SWE in preoperative ultrasound examination to measure the maximum elastic modulus (E max), the average elastic modulus (E mean) and the minimum elastic modulus (E min). The receiver operating characteristic (ROC) curve was drawn to get the optimal threshold of SWE according to the pathological results. The diagnostic value of C-TIRADS, SWE and their combined in different diameters thyroid micronodules was analyzed. Results:Among 367 thyroid nodules, 119 nodules were benign and 248 nodules were malignant. The area under the curve (AUC) of E max in diagnosing TMC was significantly larger than that of E mean and E min (0.883 vs. 0.822 and 0.706), and there was statistical difference ( P<0.05); the best cut-off value of E max was 29.5 kPa. The ROC curve analysis results showed that the AUC of C-TIRADS combined with SWE in diagnosis of TMC was significantly larger than that of C-TIRADS and SWE alone (0.884 vs. 0.800 and 0.853), and there was statistical difference ( P<0.05); the sensitivity, accuracy and negative predictive value of C-TIRADS combined with SWE in diagnosis of TMC were significantly higher than those of C-TIRADS alone (90.32% vs. 80.24%, 89.10% vs. 80.11% and 81.10% vs. 65.97%), and there were statistical differences ( P<0.05). Thyroid nodules were divided into ≤0.5 cm nodules (56 nodules) and 0.5 to 1.0 cm nodules (311 nodules) according to the maximum diameter, the sensitivity and accuracy of C-TIRADS combined with SWE in diagnosing TMC in 0.5 to 1.0 cm nodules were significantly higher than those in ≤0.5 cm nodules: 91.82% (202/220) vs. 78.57% (22/28) and 90.68% (282/311) vs. 80.36% (45/56), and there were statistical differences ( χ2 = 4.99 and 5.20, P<0.05), but there was no statistical difference in specificity between 2 groups ( P<0.05). Conclusions:C-TIRADS combined with SWE can further improve the diagnostic value of TMC, which is worth popularizing and applying in clinic.

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