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Back-calculating length from skeletal growth marks in loggerhead sea turtles Caretta caretta

机译:用顶牛海龟的骨骼生长标记反算长度

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ABSTRACT: Growth rates within and among sea turtles are highly variable, and gaining an understanding of this variability is difficult using traditional means, such as mark–recapture. Skeletochronology is becoming a standard technique for the assessment of individual growth rates in sea turtles. Here we present an analysis of the relationship between humerus diameter and somatic growth in loggerhead sea turtles Caretta caretta, demonstrating that this relationship is allometric, with a steeper slope for small pelagic turtles and a gentler slope for larger neritic turtles. We compare this relationship to models fit to neritic turtle data only and validate the ability of this relationship to accurately back-calculate carapace lengths from diameters of skeletal growth marks using 12 neritic, juvenile loggerheads that were captured, tagged, released, and subsequently recovered as dead strandings. We estimated the length at capture by back-calculation, using the diameter of the skeletal growth mark most representative of the time of capture as a predictor. The mean difference between the measured carapace length at capture and the estimated carapace length obtained through back-calculation was 0.6 cm ± 0.2 SE. For corresponding estimates of annual growth rate, the mean error was 0.2 cm yr–1 ± 0.05 SE. Although we were unable to validate the back-calculation equation for pelagic turtles, we provide indirect evidence that this equation will allow for back-calculation of sizes through this stage. We suggest that, with proper application, back-calculation in combination with skeletochronology can be a powerful tool in studying the growth dynamics of individual sea turtles.
机译:摘要:海龟内和海龟之间的增长率变化很大,使用传统方法(例如商标重新捕获)很难了解这种变化。骨骼年代学正在成为评估海龟个体生长速率的标准技术。在这里,我们对海龟 Caretta caretta 的肱骨直径与体细胞生长之间的关系进行了分析,证明了这种关系是等距的,小中上层海龟的坡度较陡,而较大的乌龟的坡度较缓。海龟。我们将这种关系与仅适合于龟类海龟数据的模型进行比较,并验证了这种关系的能力,该能力使用捕获,标记,释放并随后以12种形式捕捞的幼年黑头从骨骼生长标记的直径准确地反算出甲壳的长度。死胡同。我们使用最能代表捕获时间的骨骼生长标记的直径作为预测因子,通过反算来估计捕获时的长度。捕获时测得的甲壳长度与通过反算获得的估计甲壳长度之间的平均差为0.6 cm±0.2 SE。对于相应的年增长率估算,平均误差为0.2 cm yr –1 ±0.05 SE。尽管我们无法验证浮游龟的反向计算公式,但我们提供了间接证据,表明该公式将允许在此阶段对大小进行反向计算。我们建议,通过适当的应用,将反向计算与骨骼年代学相结合可以成为研究单个海龟生长动态的有力工具。

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