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Improving the Precision of Our Ecosystem Calipers: A Modified Morphometric Technique for Estimating Marine Mammal Mass and Body Composition

机译:提高我们的生态系统卡尺的精度:用于估计海洋哺乳动物体重和身体成分的改良形态计量技术

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摘要

Mass and body composition are indices of overall animal health and energetic balance and are often used as indicators of resource availability in the environment. This study used morphometric models and isotopic dilution techniques, two commonly used methods in the marine mammal field, to assess body composition of Weddell seals (Leptonychotes weddellii, N = 111). Findings indicated that traditional morphometric models that use a series of circular, truncated cones to calculate marine mammal blubber volume and mass overestimated the animal’s measured body mass by 26.9±1.5% SE. However, we developed a new morphometric model that uses elliptical truncated cones, and estimates mass with only −2.8±1.7% error (N = 10). Because this elliptical truncated cone model can estimate body mass without the need for additional correction factors, it has the potential to be a broadly applicable method in marine mammal species. While using elliptical truncated cones yielded significantly smaller blubber mass estimates than circular cones (10.2±0.8% difference; or 3.5±0.3% total body mass), both truncated cone models significantly underestimated total body lipid content as compared to isotopic dilution results, suggesting that animals have substantial internal lipid stores (N = 76). Multiple linear regressions were used to determine the minimum number of morphometric measurements needed to reliably estimate animal mass and body composition so that future animal handling times could be reduced. Reduced models estimated body mass and lipid mass with reasonable accuracy using fewer than five morphometric measurements (root-mean-square-error: 4.91% for body mass, 10.90% for lipid mass, and 10.43% for % lipid). This indicates that when test datasets are available to create calibration coefficients, regression models also offer a way to improve body mass and condition estimates in situations where animal handling times must be short and efficient.
机译:质量和身体组成是总体动物健康和能量平衡的指标,通常被用作环境中资源可用性的指标。这项研究使用形态计量学模型和同位素稀释技术(这是海洋哺乳动物领域的两种常用方法)来评估韦德尔海豹(Leptonychotes weddellii,N = 111)的身体成分。研究结果表明,传统的形态计量学模型使用一系列圆形的截头圆锥来计算海洋哺乳动物的脂肪量和质量,将动物的测得体重高估了26.9±1.5%SE。但是,我们开发了一个新的形态学模型,该模型使用椭圆形的截头圆锥形,并且估计质量的误差仅为-2.8±1.7%(N = 10)。由于此椭圆形截头圆锥模型可以估计体重而无需其他校正因子,因此它有可能成为海洋哺乳动物物种中广泛应用的方法。虽然使用椭圆形截头圆锥体产生的脂蛋白质量估计值显着小于圆形圆锥体(相差10.2±0.8%;或总体重的3.5±0.3%),但与同位素稀释结果相比,两个截头圆锥体模型均大大低估了总脂质含量。动物具有大量的内部脂质存储(N = 76)。使用多元线性回归来确定可靠地估计动物体重和身体组成所需的最小形态测量值,从而可以减少将来的动物处理时间。简化的模型使用少于五个的形态测量值以合理的准确性估算了体重和脂质质量(均方根误差:体重的4.91%,脂质质量的10.90%和脂质%的10.43%)。这表明,当测试数据集可用于创建校准系数时,在动物处理时间必须短而有效的情况下,回归模型还提供了一种改善体重和状况估计的方法。

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