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Sample Preparation Techniques for Determination of Fish Energy Density via Bomb Calorimetry: An Evaluation Using Largemouth Bass

机译:通过炸弹量热法测定鱼的能量密度的样品前处理技术:使用大口黑鲈的评估

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We evaluated three homogenization and subsampling techniques for preparing fish tissue samples for bomb calorimetry to identify differences in efficiency for estimating fish energy density. We compared (1) drying the whole fish and homogenizing the dried fish tissue, (2) homogenization prior to drying and then drying the subsample of fish tissue, and (3) homogenization after autoclaving to soften the hard structures and then drying a subsample of the homogenized fish tissue. Sample drying time and energy density estimates were compared among techniques across a size range (wet mass 32-1,080 g) of largemouth bass Micropterus salmoides. Both of the subsampling techniques reduced drying time by about 40% relative to drying the whole fish. All three methods provided statistically similar estimates of largemouth bass energy densities. The autoclave process was most efficient, minimizing both sample preparation time and drying time. Variance of energy density estimates was greater for both subsampling methods compared with the traditional whole-fish method. Thus, subsampling can decrease sample preparation time for bomb calorimetry but may reduce power to detect differences among variables of interest (e. g., season). Lastly, estimates of energy density for largemouth bass were a function of body mass, suggesting that using a constant energy density in bioenergetics models is not appropriate.
机译:我们评估了三种均质化和二次采样技术,用于准备炸弹量热法的鱼组织样品,以鉴定估计鱼能量密度的效率差异。我们比较了(1)干燥整条鱼并均化干燥后的鱼组织,(2)干燥前均化,然后干燥鱼组织的子样品,以及(3)高压灭菌后均质化以软化硬结构,然后干燥鱼的子样品。均质的鱼组织。比较了大口鲈鲈鱼的大小范围(湿重32-1,080 g)中各种技术的样品干燥时间和能量密度估计值。相对于干燥整个鱼,这两种二次采样技术都将干燥时间减少了约40%。三种方法都提供了大口黑鲈能量密度的统计学相似估计。高压釜处理效率最高,可最大程度减少样品制备时间和干燥时间。与传统的全鱼方法相比,两种子采样方法的能量密度估计值差异都更大。因此,二次采样可以减少用于炸弹量热法的样品制备时间,但是可以降低检测感兴趣变量之间(例如,季节)之间的差异的能力。最后,大口黑鲈能量密度的估计值是体重的函数,这表明在生物能学模型中使用恒定的能量密度是不合适的。

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