Department of Agricultural Sciences, West Texas A&M University, USA.
Meat Sci. 2010 Mar;84(3):449-54. doi: 10.1016/j.meatsci.2009.09.015. Epub 2009 Oct 4.
Bioelectrical impedance technology (BIA) is capable of providing an objective method of beef carcass yield estimation with the rapidity of yield grading. Electrical resistance (Rs), reactance (Xc), impedance (I), hot carcass weight (HCW), fat thickness between the 12th and 13th ribs (FT), estimated percentage kidney, pelvic, and heart fat (KPH%), longissimus muscle area (LMA), length between electrodes (LGE) as well as three derived carcass values that included electrical volume (EVOL), reactive density (XcD), and resistive density (RsD) were determined for the carcasses of 41 commercially fed cattle. Carcasses were subsequently fabricated into salable beef products reflective of industry standards. Equations were developed to predict percentage salable carcass yield (SY%) and percentage trimmable fat (FT%). Resulting equations accounted for 81% and 84% of variation in SY% and FT%, respectively. These results indicate that BIA technology is an accurate predictor of beef carcass composition.
生物电阻抗技术 (BIA) 能够提供一种客观的牛肉胴体产率估计方法,其具有产率分级的快速性。对 41 头商品牛的胴体进行了电阻 (Rs)、电抗 (Xc)、阻抗 (I)、热胴体重 (HCW)、第 12 至 13 肋之间的脂肪厚度 (FT)、估计的肾脏、骨盆和心脏脂肪百分比 (KPH%)、最长肌面积 (LMA)、电极之间的长度 (LGE) 以及包括电容量 (EVOL)、电抗密度 (XcD) 和电阻密度 (RsD) 在内的三个衍生胴体值的测定。胴体随后被制成符合行业标准的可销售牛肉产品。制定了预测可销售胴体产率 (SY%) 和可修剪脂肪百分比 (FT%) 的方程。结果方程分别解释了 SY%和 FT% 变化的 81%和 84%。这些结果表明,BIA 技术是牛肉胴体成分的准确预测因子。