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首页> 外文期刊>Bone Reports >Quantitative in vivo micro-computed tomography for assessment of age-dependent changes in murine whole-body composition
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Quantitative in vivo micro-computed tomography for assessment of age-dependent changes in murine whole-body composition

机译:定量体内微型计算机断层扫描技术,用于评估小鼠全身成分随年龄变化的情况

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Micro-computed tomography (micro-CT) is used routinely to quantify skeletal tissue mass in small animal models. Our goal was to evaluate repeated in vivo micro-CT imaging for monitoring whole-body composition in studies of growth and aging in mice. Male mice from 2 to 52 weeks of age were anesthetized and imaged using an eXplore Locus Ultra and/or eXplore speCZT scanner. Images were reconstructed into 3D volumes, signal-intensity thresholds were used to classify each voxel as adipose, lean or skeletal tissue, and tissue masses were calculated from known density values. Images revealed specific changes in tissue distribution with growth and aging. Quantification showed biphasic increases in total CT-derived body mass, lean and skeletal tissue masses, consisting of rapid increases to 8 weeks of age, followed by slow linear increases to 52 weeks. In contrast, bone mineral density increased rapidly to a stable plateau at ~ 14 weeks of age. On the other hand, adipose tissue mass increased continuously with age. A micro-CT-derived total mass was calculated for each mouse and compared with gravimetrically measured mass, which differed on average by 3%. Parameters were highly reproducible for mice of the same age, but variability increased slightly with age. There was also good agreement in parameters for the same group of mice scanned on the eXplore Locus Ultra and eXplore speCZT systems. This study provides reference values for normative comparisons; as well, it demonstrates the usefulness of in vivo single-energy micro-CT scans to quantify whole-body composition in high-throughput studies of growth and aging in mice. Highlights ? Novel use of micro-CT to monitor body composition during growth and aging of mice. ? Skeletal, adipose and lean tissue masses were quantified using in vivo imaging. ? Marked differences in composition occur during rapid growth from 2 to 5 weeks of age. ? Reference data for other investigators using mice as disease models. ? Micro-CT is an accurate tool for quantification of body composition in mice.
机译:微型计算机断层扫描(micro-CT)通常用于量化小型动物模型中的骨骼组织质量。我们的目标是评估小鼠体内生长和衰老研究中重复的体内micro-CT成像以监测全身成分。使用eXplore Locus Ultra和/或eXplore speCZT扫描仪麻醉2至52周龄的雄性小鼠并对其成像。将图像重建为3D体积,使用信号强度阈值将每个体素分类为脂肪,瘦肉或骨骼组织,并根据已知的密度值计算组织质量。图像显示组织分布随生长和衰老而发生特定变化。定量显示,CT衍生的总体重,瘦肉和骨骼组织质量呈双相增加,包括迅速增加到8周龄,然后缓慢线性增加到52周。相反,在约14周龄时,骨矿物质密度迅速增加至稳定的平台。另一方面,脂肪组织的质量随着年龄的增长而持续增加。计算了每只小鼠的微CT来源总质量,并将其与重量测量的质量进行比较,重量平均相差<3%。对于相同年龄的小鼠,参数具有很高的可重复性,但是变异性随年龄的增长而略有增加。在eXplore Locus Ultra和eXplore speCZT系统上扫描的同一组小鼠的参数方面也有很好的一致性。这项研究为规范比较提供了参考值。同时,它也证明了体内单能微CT扫描在定量研究小鼠生长和衰老的高通量研究中的有用性。强调 ?微型CT在小鼠生长和衰老过程中用于监测身体成分的新型用途。 ?使用体内成像对骨骼,脂肪和瘦组织质量进行定量。 ?在2到5周龄的快速生长过程中,会出现明显的成分差异。 ?使用小鼠作为疾病模型的其他研究者的参考数据。 ? Micro-CT是定量小鼠体内成分的准确工具。

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