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Measurement of total body composition changes of common carp by computer tomography

机译:用计算机断层摄影技术测量鲤鱼的全身成分变化

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The crude fat and protein content of the total body was estimated by X-ray computer tomography (CT) and determined by chemical analyses during a feeding experiment with sexually matured common carp. Between 21 and 35 serial scans were taken of altogether 41 fish and samples from the homogenized body were prepared for chemical analyses. Experimental fish with an average body weight of 1453 g originated from a commercial stock of mirror carp. Two feeding regimes (carp feed and carp feed +ad libitum maize) were applied for 57 days and followed by a fasting period of 27 days. Both feeding regimes significantly increased the crude fat content of the whole body that did not decrease during fasting in spite of high water temperature (22 degreesC). No significant changes were observed in crude protein content. The variables used for producing the prediction equations were taken from the density values of the Hounsfield scale, on a range between - 90 and + 160, by summing the frequencies within each interval of 10 values. Whole body fat content could be estimated with R-2 = 0.89 - 0.91 accuracy with the principal component analysis using data of all (seven) body regions and only dorsal fin region respectively. Adequate linear regression model could not be calculated by the same procedure for crude protein. Three-dimensional 'volumetric' estimation of fat tissue was also carried out on the basis of fat index showing high correlation with measured fat content. The changes of body composition of individual fish can be followed by sequential CT scanning.
机译:通过X射线计算机断层扫描(CT)估算整个身体的粗脂肪和蛋白质含量,并在性成熟鲤鱼的饲喂实验中通过化学分析确定。对总共41条鱼进行了21到35次连续扫描,并准备了来自均质体的样本进行化学分析。平均体重为1453 g的实验鱼来自镜鲤的商业种群。两种饲喂方案(鲤鱼饲料和鲤鱼饲料+任意玉米)施用57天,然后禁食27天。两种喂养方式均显着增加了全身的粗脂肪含量,尽管水温高(22摄氏度),但在禁食期间并未降低。粗蛋白含量未见明显变化。通过将10个值的每个间隔内的频率相加,从Hounsfield刻度的密度值(介于-90和+ 160之间)中获取用于生成预测方程式的变量。通过分别使用所有(七个)身体区域和仅背鳍区域的数据进行主成分分析,可以估计R-2 = 0.89-0.91准确度的全身脂肪含量。对于相同的粗蛋白,无法通过相同的程序计算出足够的线性回归模型。脂肪组织的三维“体积”估算也基于脂肪指数显示,该指数与测得的脂肪含量高度相关。个别鱼类的身体成分发生变化后,可以依次进行CT扫描。

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