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首页> 外文期刊>Metabolism: Clinical and Experimental >Calibration of a semi-automated segmenting method for quantification of adipose tissue compartments from magnetic resonance images of mice
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Calibration of a semi-automated segmenting method for quantification of adipose tissue compartments from magnetic resonance images of mice

机译:半自动分割方法的校准,用于量化小鼠磁共振图像中的脂肪组织区室

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摘要

Objective To use an automated water-suppressed magnetic resonance imaging (MRI) method to objectively assess adipose tissue (AT) volumes in whole body and specific regional body components (subcutaneous, thoracic and peritoneal) of obese and lean mice. Materials/Methods Water-suppressed MR images were obtained on a 7 T, horizontal-bore MRI system in whole bodies (excluding head) of 26 week old male C57BL6J mice fed a control (10% kcal fat) or high-fat diet (60% kcal fat) for 20 weeks. Manual (outlined regions) versus automated (Gaussian fitting applied to threshold-weighted images) segmentation procedures were compared for whole body AT and regional AT volumes (i.e., subcutaneous, thoracic, and peritoneal). The AT automated segmentation method was compared to dual-energy X-ray (DXA) analysis. Results The average AT volumes for whole body and individual compartments correlated well between the manual outlining and the automated methods (R2 0.77, p 0.05). Subcutaneous, peritoneal, and total body AT volumes were increased 2-3 fold and thoracic AT volume increased more than 5-fold in diet-induced obese mice versus controls (p 0.05). MRI and DXA-based method comparisons were highly correlative (R 2 = 0.94, p 0.0001). Conclusions Automated AT segmentation of water-suppressed MRI data using a global Gaussian filtering algorithm resulted in a fairly accurate assessment of total and regional AT volumes in a pre-clinical mouse model of obesity.
机译:目的采用自动水抑制磁共振成像(MRI)方法客观评估肥胖和瘦小鼠的全身及特定区域身体成分(皮下,胸腔和腹膜)的脂肪组织(AT)量。材料/方法在7吨水平口径MRI系统上,对26周龄雄性C57BL6J小鼠(对照组,10%大卡脂肪)或高脂饮食(60)的全身(不包括头部)进行水抑制MR成像。 20周)。比较了全身AT和区域AT体积(即皮下,胸腔和腹膜)的手动(轮廓区域)与自动(将高斯拟合应用于阈值加权图像)分割程序。将AT自动分割方法与双能X射线(DXA)分析进行了比较。结果全身轮廓和各个部位的平均AT量在手动勾画方法和自动方法之间具有很好的相关性(R2> 0.77,p <0.05)。与饮食对照组相比,饮食诱导的肥胖小鼠的皮下,腹膜和全身AT量增加了2-3倍,胸腔AT量增加了5倍以上(p <0.05)。基于MRI和DXA的方法比较具有高度相关性(R 2 = 0.94,p <0.0001)。结论使用全局高斯滤波算法对水抑制的MRI数据进行自动AT分割,可以在临床前肥胖小鼠模型中相当准确地评估总和局部AT量。

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