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Diffusion weighted imaging in patients with rectal cancer: Comparison between Gaussian and non-Gaussian models.

Georgios C Manikis ,
Kostas Marias ,
Doenja M J Lambregts ,
Katerina Nikiforaki ,
Miriam M van Heeswijk ,
Frans C H Bakers ,
Regina G H Beets-Tan ,
Nikolaos Papanikolaou

Abstract

MATERIAL AND METHODS

Nineteen patients with rectal adenocarcinoma underwent MRI examination of the rectum before chemoradiation therapy including a 7 b-value diffusion sequence (0, 25, 50, 100, 500, 1000 and 2000 s/mm2) at a 1.5T scanner. Four different diffusion models including mono- and bi-exponential Gaussian (MG and BG) and non-Gaussian (MNG and BNG) were applied on whole tumor volumes of interest. Two different statistical criteria were recruited to assess their fitting performance, including the adjusted-R2 and Root Mean Square Error (RMSE). To decide which model better characterizes rectal cancer, model selection was relied on Akaike Information Criteria (AIC) and F-ratio.

CONCLUSION

No single diffusion model evaluated herein could accurately describe rectal tumours. These findings probably can be explained on the basis of increased tumour heterogeneity, where areas with high vascularity could be fitted better with bi-exponential models, and areas with necrosis would mostly follow mono-exponential behavior.

RESULTS

All candidate models achieved a good fitting performance with the two most complex models, the BG and the BNG, exhibiting the best fitting performance. However, both criteria for model selection indicated that the MG model performed better than any other model. In particular, using AIC Weights and F-ratio, the pixel-based analysis demonstrated that tumor areas better described by the simplest MG model in an average area of 53% and 33%, respectively. Non-Gaussian behavior was illustrated in an average area of 37% according to the F-ratio, and 7% using AIC Weights. However, the distributions of the pixels best fitted by each of the four models suggest that MG failed to perform better than any other model in all patients, and the overall tumor area.

PURPOSE

The purpose of this study was to compare the performance of four diffusion models, including mono and bi-exponential both Gaussian and non-Gaussian models, in diffusion weighted imaging of rectal cancer.

More about this publication

PloS one

Volume 12
Issue nr. 9
Pages e0184197
Publication date 02-09-2017

Full text links

Publisher website (DOI) 10.1371/journal.pone.0184197
Europe PubMed Central 28863161
Pubmed 28863161

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