阈值
医学
变异系数
胰腺
2型糖尿病
糖尿病
核医学
放射科
数学
内科学
人工智能
计算机科学
内分泌学
统计
图像(数学)
作者
Ahmad Al-Mrabeh,Kieren G. Hollingsworth,Sarah Steven,Dina Tiniakos,Roy Taylor
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2017-04-03
卷期号:12 (4): e0174660-e0174660
被引量:77
标识
DOI:10.1371/journal.pone.0174660
摘要
Objectives Accumulation of intrapancreatic fat may be important in type 2 diabetes, but widely varying data have been reported. The standard quantification by MRI in vivo is time consuming and dependent upon a high level of experience. We aimed to develop a new method which would minimise inter-observer variation and to compare this against previously published datasets. Methods A technique of ‘biopsying’ the image to minimise inclusion of non-parenchymal tissues was developed. Additionally, thresholding was applied to exclude both pancreatic ducts and intrusions of visceral fat, with pixels of fat values of <1% or >20% being excluded. The new MR image ‘biopsy’ (MR-opsy) was compared to the standard method by 6 independent observers with wide experience of image analysis but no experience of pancreas imaging. The effect of the new method was examined on datasets from two studies of weight loss in type 2 diabetes. Results At low levels of intrapancreatic fat neither the result nor the inter-observer CV was changed by MR-opsy, thresholding or a combination of the methods. However, at higher levels the conventional method exhibited poor inter-observer agreement (coefficient of variation 26.9%) and the new combined method improved the CV to 4.3% (p<0.03). Using either MR-opsy alone or with thresholding, the new methods indicated a closer relationship between decrease in intrapancreatic fat and fall in blood glucose. Conclusion The inter-observer variation for quantifying intrapancreatic fat was substantially improved by the new method when pancreas fat levels were moderately high. The method will improve comparability of pancreas fat measurement between research groups.
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