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X射线计算机断层扫描与定量核磁共振方法在活体小鼠脂肪和瘦组织临床前测量中的相关性

Correlation of X-ray computed tomography with quantitative nuclear magnetic resonance methods for pre-clinical measurement of adipose and lean tissues in living mice.

作者信息

Metzinger Matthew N, Miramontes Bernadette, Zhou Peng, Liu Yueying, Chapman Sarah, Sun Lucy, Sasser Todd A, Duffield Giles E, Stack M Sharon, Leevy W Matthew

机构信息

Department of Chemistry and Biochemistry, 236 Nieuwland Science Hall, University of Notre Dame, Notre Dame, IN 46556, USA.

Department of Biological Sciences, Galvin Life Sciences Center, University of Notre Dame, Notre Dame, IN 46556, USA.

出版信息

Sensors (Basel). 2014 Oct 8;14(10):18526-42. doi: 10.3390/s141018526.

Abstract

Numerous obesity studies have coupled murine models with non-invasive methods to quantify body composition in longitudinal experiments, including X-ray computed tomography (CT) or quantitative nuclear magnetic resonance (QMR). Both microCT and QMR have been separately validated with invasive techniques of adipose tissue quantification, like post-mortem fat extraction and measurement. Here we report a head-to-head study of both protocols using oil phantoms and mouse populations to determine the parameters that best align CT data with that from QMR. First, an in vitro analysis of oil/water mixtures was used to calibrate and assess the overall accuracy of microCT vs. QMR data. Next, experiments were conducted with two cohorts of living mice (either homogenous or heterogeneous by sex, age and genetic backgrounds) to assess the microCT imaging technique for adipose tissue segmentation and quantification relative to QMR. Adipose mass values were obtained from microCT data with three different resolutions, after which the data were analyzed with different filter and segmentation settings. Strong linearity was noted between the adipose mass values obtained with microCT and QMR, with optimal parameters and scan conditions reported herein. Lean tissue (muscle, internal organs) was also segmented and quantified using the microCT method relative to the analogous QMR values. Overall, the rigorous calibration and validation of the microCT method for murine body composition, relative to QMR, ensures its validity for segmentation, quantification and visualization of both adipose and lean tissues.

摘要

众多肥胖研究已将小鼠模型与非侵入性方法相结合,用于在纵向实验中量化身体成分,包括X射线计算机断层扫描(CT)或定量核磁共振(QMR)。微型CT和QMR都已分别通过脂肪组织量化的侵入性技术进行了验证,如死后脂肪提取和测量。在此,我们报告一项使用油体模和小鼠群体对这两种方法进行的直接比较研究,以确定能使CT数据与QMR数据最佳匹配的参数。首先,对油/水混合物进行体外分析,以校准和评估微型CT与QMR数据的整体准确性。接下来,对两组活体小鼠(按性别、年龄和遗传背景分为同质或异质)进行实验,以评估微型CT成像技术相对于QMR在脂肪组织分割和量化方面的效果。从具有三种不同分辨率的微型CT数据中获取脂肪质量值,然后使用不同的滤波和分割设置对数据进行分析。微型CT和QMR获得的脂肪质量值之间呈现出很强的线性关系,本文报告了最佳参数和扫描条件。还使用微型CT方法相对于类似的QMR值对瘦组织(肌肉、内脏器官)进行了分割和量化。总体而言,相对于QMR,对微型CT方法用于小鼠身体成分分析进行严格校准和验证,确保了其在脂肪和瘦组织的分割、量化及可视化方面的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc8b/4239858/450333378cc8/sensors-14-18526f1.jpg

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