首页> 外文期刊>Journal of Animal Science >Evaluation of electrical broad bandwidth impedance spectroscopy bioelectrical impedance spectroscopy, cow, deuterium oxide dilution, fat depot massas a tool for body composition measurement in cows in comparison with body measurements and the deuterium oxide dilution method
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Evaluation of electrical broad bandwidth impedance spectroscopy bioelectrical impedance spectroscopy, cow, deuterium oxide dilution, fat depot massas a tool for body composition measurement in cows in comparison with body measurements and the deuterium oxide dilution method

机译:电气宽带宽阻抗光谱学生物电阻抗光谱,牛,氘氧化物稀释,脂肪仓Massas一种用于母牛体组成测量的工具与体测量和氘氧化物稀释方法相比

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摘要

Body fatness and degree of body fat mobilization in cows vary enormously during their reproduction cycle and influence energy partitioning and metabolic adaptation. The objective of the study was to test bioelectrical impedance spectroscopy (BIS) as a method for predicting fat depot mass (FDM), in living cows. The FDM is defined as the sum of subcutaneous, omental, mesenteric, retroperitoneal, and carcass fat mass. Bioelectrical impedance spectroscopy is compared with the prediction of FDM from the deuterium oxide (D2O) dilution method and from body conformation measurements. Charolais x Holstein Friesian (HF; n = 18; 30 d in milk) crossbred cows and 2 HF (lactating and nonlactating) cows were assessed by body conformation measurements, BIS, and the D2O dilution method. The BCS of cows was a mean of 3.68 (SE 0.64). For the D2O dilution method, a bolus of 0.23 g/kg BW D2O (60 atom%) was intravenously injected and deuterium (D) enrichment was analyzed in plasma and whey by stabile isotope mass spectrometry, and total body water content was calculated. Impedance measurement was performed using a 4-electrode interface and time domain-based measurement system consisting of a voltage/current converter for applying current stimulus and an amplifier for monitoring voltage across the sensor electrodes. For the BIS, we used complex impedances over three frequency decades that delivers information on intra-and extracellular water and capacity of cell membranes. Impedance data (resistance of extra-and intracellular space, cell membrane capacity, and phase angle) were extracted 1) by simple curve fit to extract the resistance at direct current and high frequency and 2) by using an electrical equivalent circuit. Cows were slaughtered 7 d after BIS and D enrichment measurements and dissected for the measurement of FDM. Multiple linear regression analyses were performed to predict FDM based on data obtained from body conformation measurements, BIS, and D enrichment, and applied methods were evaluated by cross-validation. The FDM varied widely between cows and was correlated to D enrichment in plasma (r = 0.91, P 0.05). Prediction of FDM by body size measurements was less precise (R-2 = 0.84), but FDM prediction was more accurate using D enrichment in plasma (R-2 = 0.90) and BIS (R-2 = 0.99) data. Therefore, both BIS and D enrichment analysis resulted in similarly good predictions of FDM in cows, and we conclude that BIS could have the potential to predict FDM in dairy cows from 40 to 380 kg.
机译:在其繁殖循环期间,奶牛的身体脂肪和体内脂肪动员程度变化,影响能量分配和代谢适应。该研究的目的是测试生物电阻抗光谱(BIS)作为预测生物奶牛中脂肪仓肿块(FDM)的方法。 FDM定义为皮下,题,肠系膜,腹膜后和胴体脂肪量的总和。将生物电阻抗光谱与来自氧化氘(D2O)稀释法的FDM预测进行比较,以及体构象测量。 Charolais X Holstein Friesian(HF; n = 18; 30d)通过体构象测量,BIS和D2O稀释方法评估杂交牛和2HF(哺乳期和非乳液)奶牛和2 HF(哺乳期和非疾病)奶牛。奶牛的BCS是3.68(SE 0.64)的平均值。对于D2O稀释方法,静脉内注射0.23g / kg Bw D2O(60原子%)的推注,并通过稳定同位素质谱法在血浆中分析氘(D)富集,并计算总体水含量。使用由电压/电流转换器组成的4电极接口和基于时域的测量系统进行阻抗测量,用于施加电流刺激和放大器以监视传感器电极上的电压。对于BIS而言,我们在三个频率数十年中使用了复杂的阻抗,可提供有关细胞内水和细胞膜容量的信息。通过使用电力等效电路,通过简单的曲线拟合提取1)通过简单曲线拟合提取电阻以提取电力等效电路的电阻,通过使用电力等效电路提取阻抗数据(细胞内空间,细胞膜容量和相位角)。在BIS和D浓缩测量后屠宰7天,并解剖FDM的测量。进行多元线性回归分析以预测基于从体构象测量,BIS和D富集获得的数据来预测FDM,并通过交叉验证评估应用方法。 FDM在奶牛之间广泛变化,与血浆中的D富集相关(r = 0.91,p <0.05)。通过体尺寸测量的FDM预测较低(R-2 = 0.84),但使用血浆(R-2 = 0.90)和BIS(R-2 = 0.99)数据的D富集,FDM预测更准确。因此,BIS和D浓缩分析均导致奶牛中FDM同样良好的预测,我们得出结论,BIS可能有可能预测乳制品奶牛的FDM,从40到380公斤预测FDM。

著录项

  • 来源
    《Journal of Animal Science》 |2017年第5期|共11页
  • 作者单位

    Leibniz Inst Farm Anim Biol FBN Inst Nutr Physiol Oskar Kellner D-18196 Dummerstorf Germany;

    Inst Bioproc &

    Analyt Measurement Tech iba Dept Analyt Measurement Tech D-37308 Heilbad Heiligenstadt Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Genet &

    Biometry D-18196 Dummerstorf Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Muscle Biol &

    Growth D-18196 Dummerstorf Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Nutr Physiol Oskar Kellner D-18196 Dummerstorf Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Nutr Physiol Oskar Kellner D-18196 Dummerstorf Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Nutr Physiol Oskar Kellner D-18196 Dummerstorf Germany;

    Leibniz Inst Farm Anim Biol FBN Inst Nutr Physiol Oskar Kellner D-18196 Dummerstorf Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 动物学;
  • 关键词

    bioelectrical impedance spectroscopy; cow; deuterium oxide dilution; fat depot mass;

    机译:生物电阻抗光谱;牛;氘氧化物稀释;脂肪仓库;

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