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Estimating juvenile copepod growth rates: corrections, inter-comparisons and recommendations

机译:估计co足类幼鱼的增长率:更正,比对和建议

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摘要

The 2 most common experimental methods used to estimate rates of juvenile growth in marine copepods are the molt rate (MR) method, and the artificial cohort (AC) method. Recently, we showed the equations used in the MR method to be incorrect, and proposed a modified molt rate (MMR) method. Here, using statistical and model approaches, we compare the AC and MMR methods under various scenarios to quantify their errors. Although the AC and MMR methods both use a combination of field sampling and simulated in situ incubations to estimate somatic growth, they differ in several important characteristics. The AC method determines growth by the change in mean weight during incubation. Mean weight of copepods in the samples can be determined directly, or inferred from mean weight by life stage or from length-weight regressions. We show that substantial error is avoided only if weights are measured directly (AC_(direct)). The AC_(direct) method is insensitive to variable age within stage due to mortality or variable recruitment in the sampled population, an important advantage over the MMR method. However, the AC_(direct) method is sensitive to variation in growth rate during incubation, which does not affect the MMR method. We therefore recommend that most experimental estimates of growth rate should apply the AC_(direct) method, with the MMR as a suitable alternative provided its biases are considered. An indirect method based on life stage is biased and we no longer recommend it, and an indirect method based on length-weight regression provides an intermediate level of bias.
机译:用于估计海洋co足类幼鱼生长速率的两种最常见的实验方法是蜕皮速率(MR)方法和人工队列(AC)方法。最近,我们证明了MR方法中使用的方程式是不正确的,并提出了一种改进的蜕皮速率(MMR)方法。在这里,我们使用统计和模型方法,比较各种情况下的AC和MMR方法,以量化其误差。尽管AC和MMR方法都结合使用了现场采样和模拟的原位培养来估计体细胞生长,但是它们在几个重要特征上有所不同。 AC方法通过孵育过程中平均重量的变化来确定生长。样品中co足类动物的平均体重可以直接确定,也可以根据生命阶段的平均体重或从身长体重回归得出。我们表明,仅当直接测量权重(AC_(direct))时,才可以避免发生实质性错误。 AC_(direct)方法由于死亡率或抽样人群中的可变募集而对阶段内的可变年龄不敏感,这是相对于MMR方法的重要优势。但是,AC_(直接)方法对孵育过程中生长速率的变化很敏感,这不会影响MMR方法。因此,我们建议大多数实验增长率的估算应采用AC_(direct)方法,如果考虑了MMR的偏差,则将MMR作为合适的替代方法。基于生命阶段的间接方法是有偏见的,我们不再推荐,基于长度-重量回归的间接方法提供了中等偏见。

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