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生物电阻抗分析用于预测羔羊及羔羊肉体的去脂体重。

Bioelectrical impedance analysis for the prediction of fat-free mass in lambs and lamb carcasses.

作者信息

Berg E P, Marchello M J

机构信息

Department of Animal Sciences, North Dakota State University, Fargo 58105.

出版信息

J Anim Sci. 1994 Feb;72(2):322-9. doi: 10.2527/1994.722322x.

Abstract

Ninety-eight commercial crossbred lambs, average weight 55.1 kg (+/- 4.95), were used to evaluate bioelectrical impedance analysis (BIA) as a prediction method for fat-free tissue from live lambs and lamb carcasses. Lambs were transported to the abattoir, restricted from feed for 10 h, weighed (LWt), and measured for body resistance (Rs, ohms), body reactance (Xc, ohms), and distance between detector terminals (L, cm). Following slaughter, hot carcasses were weighed (HCWt; average 31.4 +/- 2.8 kg) and impedance measurements of Rs, Xc, and L were recorded from readings on the dorsal and lateral sides of the carcasses. Temperatures (average = 39.2 degrees C) were recorded. Carcasses were chilled for 24 h. Cold carcass weights (CWt; average 31.1 +/- 2.8 kg) and temperatures (average = 1.0 degrees C) were recorded and BIA measurements were repeated. Carcasses were split down the midline and right sides were ground three times and sampled for chemical analysis of fat, moisture, ash, and protein. Fat-free mass (FFM) was calculated as [Wt-(Wt x %Fat)]. Fat-free soft tissue (FFST) was calculated as the sum of carcass chemical protein and carcass water. Regression equations predicting fat-free tissue for the live lambs (FFMlive and FFSTlive), hot carcasses (FFMhot and FFSThot), and cold carcasses (FFMcold and FFSTcold) were developed. The independent variables LWt, Rs, and Xc accounted for 77.7% (residual mean square error [RMSE] = 1.97 kg) of the variation in FFMlive and 78.6% (RMSE = 1.78 kg) of the variability of FFSTlive.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

选用98只平均体重55.1千克(±4.95)的商品杂交羔羊,以评估生物电阻抗分析(BIA)作为预测活羔羊和羊胴体无脂肪组织的方法。羔羊被运至屠宰场,禁食10小时后称重(活体重,LWt),并测量其体电阻(Rs,欧姆)、体电抗(Xc,欧姆)以及检测电极间距离(L,厘米)。屠宰后,称取热胴体重(HCWt;平均31.4±2.8千克),并记录胴体背侧和外侧的Rs、Xc和L的阻抗测量值。记录温度(平均=39.2摄氏度)。胴体冷却24小时。记录冷胴体重(CWt;平均31.1±2.8千克)和温度(平均=1.0摄氏度),并重复进行BIA测量。胴体沿中线劈开,右侧研磨三次,取样进行脂肪、水分、灰分和蛋白质的化学分析。无脂肪质量(FFM)计算为[体重-(体重×脂肪百分比)]。无脂肪软组织(FFST)计算为胴体化学蛋白质与胴体水分之和。建立了预测活羔羊(FFMlive和FFSTlive)、热胴体(FFMhot和FFSThot)以及冷胴体(FFMcold和FFSTcold)无脂肪组织的回归方程。自变量LWt、Rs和Xc解释了FFMlive变异的77.7%(残差均方误差[RMSE]=1.97千克)以及FFSTlive变异的78.6%(RMSE=1.78千克)。(摘要截选至250词)

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