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首页> 外文期刊>Archives Animal Breeding >Comparison of a GE Lunar DPX-IQ and a Norland XR-26 dual energy X-ray absorptiometry scanner for body composition measurements in pigs –?in vivo
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Comparison of a GE Lunar DPX-IQ and a Norland XR-26 dual energy X-ray absorptiometry scanner for body composition measurements in pigs –?in vivo

机译:GE Lunar DPX-IQ和Norland XR-26双能X射线吸收测定扫描仪在猪体内的体内成分测量的比较

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In the context of future growth and performance testing, this study compares corresponding body composition results measured by two dual energy X-ray absorptiometry systems. To test the capability of each device to detect differences among experimental groups widely varying in body composition, 77 pigs from 6 purebred/crossbred groups were used for the experiment. Each pig was scanned consecutively on a Norland XR-26 and on a GE Lunar DPX-IQ. Coefficients of determination were: R2=0.92 for bone mineral content (BMC), R2=0.90 for bone mineral density (BMD), R2=0.94 for lean mass (LEAN), R2=0.92 for fat mass (FAT), R2=0.88 for lean percentage (%LEAN) and fat percentage (%FAT). However, Norland yielded larger values for %FAT and smaller values for %LEAN, BMC, and BMD than Lunar (P<0.001) with the extent of deviation depending on the specific trait and on the breeding group. The deviation in BMC was greater than the deviation in BMD, suggesting different bone detecting algorithms. Both systems revealed similar differences among the breeding groups, and ranked them in the same order based on numerical values. Differences in calibration, bone detection, and software algorithms, however, require a prior crosscalibration to make the body composition data from both systems directly comparable. Finally, they can be used across research centres for the determination of relative and absolute body composition differences among animal groups and individuals.
机译:在未来的增长和性能测试的背景下,本研究比较了由两个双能X射线吸收仪系统测量的相应身体成分结果。为了测试每种设备检测身体组成差异很大的实验组之间差异的能力,将来自6个纯种/杂种组的77头猪用于实验。在Norland XR-26和GE Lunar DPX-IQ上连续扫描每头猪。测定系数为:骨矿物质含量(BMC)为R2 = 0.92,骨矿物质密度(BMD)为R2 = 0.90,瘦肉(LEAN)为R2 = 0.94,脂肪质量(FAT)为R2 = 0.92,R2 = 0.88表示瘦肉率(%LEAN)和脂肪率(%FAT)。但是,与月球相比,Norland的%FAT值较大,%LEAN,BMC和BMD值较小(P <0.001),其偏差程度取决于特定的性状和育种组。 BMC中的偏差大于BMD中的偏差,表明存在不同的骨骼检测算法。两种系统都揭示出育种组之间存在相似的差异,并基于数值对它们进行相同的排序。但是,校准,骨骼检测和软件算法的差异需要事先进行交叉校准才能使两个系统的身体成分数据直接可比。最后,它们可以在研究中心中使用,以确定动物群体和个体之间相对和绝对的身体成分差异。

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