Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/88507
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Type: Journal article
Title: Endometrial thickness measurement for detecting endometrial cancer in women with postmenopausal bleeding: a systematic review and meta-analysis
Author: Timmermans, A.
Opmeer, B.
Khan, K.
Bachmann, L.
Epstein, E.
Clark, T.
Gupta, J.
Bakour, S.
van den Bosch, T.
van Doorn, H.
Cameron, S.
Giusa, M.
Dessole, S.
Dijkhuizen, F.
ter Riet, G.
Mol, B.
Citation: Obstetrics and Gynecology, 2010; 116(1):160-167
Publisher: Lippincott Williams & Wilkins
Issue Date: 2010
ISSN: 0029-7844
1873-233X
Statement of
Responsibility: 
Anne Timmermans, Brent C. Opmeer, Khalid S. Khan, Lucas M. Bachmann, Elisabeth Epstein, T. Justin Clark, Janesh K. Gupta, Shagaf H. Bakour, Thierry van den Bosch, Helena C. van Doorn, Sharon T. Cameron, M. Gabriella Giusa, Stefano Dessole, F. Paul H. L. J. Dijkhuizen, Gerben ter Riet, and Ben W. J. Mol
Abstract: OBJECTIVE: To estimate the accuracy of endometrial thickness measurement in the detection of endometrial cancer among women with postmenopausal bleeding with individual patient data using different meta-analytic strategies. DATA SOURCES: Original data sets of studies detected after reviewing the included studies of three previous reviews on this subject. An additional literature search of published articles using MEDLINE databases was preformed from January 2000 to December 2006 to identify articles reporting on endometrial carcinoma and sonographic endometrial thickness measurement in women with postmenopausal bleeding. METHODS OF STUDY SELECTION: We identified 90 studies reporting on endometrial thickness measurements and endometrial carcinoma in women with postmenopausal bleeding. TABULATION, INTEGRATION, AND RESULTS: We contacted 79 primary investigators to obtain the individual patient data of their reported studies, of which 13 could provide data. Data on 2,896 patients, of which 259 had carcinoma, were included. Several approaches were used in the analyses of the acquired data. First, we performed receiver operator characteristics (ROC) analysis per study, resulting in a summary area under the ROC curve (AUC) calculated as a weighted mean of AUCs from original studies. Second, individual patient data were pooled and analyzed with ROC analyses irrespective of study with standardization of distributional differences across studies using multiples of the median and by random effects logistic regression. Finally, we also used a two-stage procedure, calculating sensitivities and specificities for each study and using the bivariate random effects model to estimate summary estimates for diagnostic accuracy. This resulted in rather comparable ROC curves with AUCs varying between 0.82 and 0.84 and summary estimates for sensitivity and specificity located along these curves. These curves indicated a lower AUC than previously reported meta-analyses using conventional techniques. CONCLUSION: Previous meta-analyses on endometrial thickness measurement probably have overestimated its diagnostic accuracy in the detection of endometrial carcinoma. We advise the use of cutoff level of 3 mm for exclusion of endometrial carcinoma in women with postmenopausal bleeding.
Keywords: Endometrium
Humans
Endometrial Neoplasms
Uterine Hemorrhage
Ultrasonography
Sensitivity and Specificity
ROC Curve
Postmenopause
Female
Rights: © 2010 by The American College of Obstetricians and Gynecologists
DOI: 10.1097/AOG.0b013e3181e3e7e8
Published version: http://dx.doi.org/10.1097/aog.0b013e3181e3e7e8
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