MP65-20 UTILITY OF APPARENT DIFFUSION COEFFICIENT VALUES FOR CHARACTERIZATION OF METASTATIC LYMPH NODES IN BLADDER CANCER

2014 ◽  
Vol 191 (4S) ◽  
Author(s):  
Ahmed M. Mansour ◽  
Mohamed E. Abou-El-Ghar ◽  
Huda F. Refaie ◽  
Ahmed El-Assmy ◽  
Ahmed Mosbah ◽  
...  
Author(s):  
Alexey Surov ◽  
Hans-Jonas Meyer ◽  
Maciej Pech ◽  
Maciej Powerski ◽  
Jasan Omari ◽  
...  

Abstract Background Our aim was to provide data regarding use of diffusion-weighted imaging (DWI) for distinguishing metastatic and non-metastatic lymph nodes (LN) in rectal cancer. Methods MEDLINE library, EMBASE, and SCOPUS database were screened for associations between DWI and metastatic and non-metastatic LN in rectal cancer up to February 2021. Overall, 9 studies were included into the analysis. Number, mean value, and standard deviation of DWI parameters including apparent diffusion coefficient (ADC) values of metastatic and non-metastatic LN were extracted from the literature. The methodological quality of the studies was investigated according to the QUADAS-2 assessment. The meta-analysis was undertaken by using RevMan 5.3 software. DerSimonian, and Laird random-effects models with inverse-variance weights were used to account the heterogeneity between the studies. Mean DWI values including 95% confidence intervals were calculated for metastatic and non-metastatic LN. Results ADC values were reported for 1376 LN, 623 (45.3%) metastatic LN, and 754 (54.7%) non-metastatic LN. The calculated mean ADC value (× 10−3 mm2/s) of metastatic LN was 1.05, 95%CI (0.94, 1.15). The calculated mean ADC value of the non-metastatic LN was 1.17, 95%CI (1.01, 1.33). The calculated sensitivity and specificity were 0.81, 95%CI (0.74, 0.89) and 0.67, 95%CI (0.54, 0.79). Conclusion No reliable ADC threshold can be recommended for distinguishing of metastatic and non-metastatic LN in rectal cancer.


2012 ◽  
Vol 22 (11) ◽  
pp. 2514-2524 ◽  
Author(s):  
Andrzej Cieszanowski ◽  
Agnieszka Anysz-Grodzicka ◽  
Wojciech Szeszkowski ◽  
Bartosz Kaczynski ◽  
Edyta Maj ◽  
...  

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