首页> 外文期刊>Journal of Zoo and Wildlife Medicine >MEASURING FAT CONTENT USING COMPUTED TOMOGRAPHY TO ESTABLISH A BODY CONDITION INDEX IN FREE-RANGING BLANDING'S TURTLES (EMYDOIDEA BLANDINGII) IN ILLINOIS
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MEASURING FAT CONTENT USING COMPUTED TOMOGRAPHY TO ESTABLISH A BODY CONDITION INDEX IN FREE-RANGING BLANDING'S TURTLES (EMYDOIDEA BLANDINGII) IN ILLINOIS

机译:使用计算机断层扫描测量脂肪含量,以在伊利诺伊州的自由范围的乌龟(Emydoidea Blandingii)中建立身体状况指数

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摘要

Health assessment of free-ranging populations requires an integrated approach, often incorporating a method to measure mass as a representation of the animals' ability to utilize environmental resources. In chelonians, direct measurements of mass have historically served as a corollary for body condition. However, this method may not accurately represent the true fat volume (FV) and may be skewed by the presence of eggs, shell size, or muscle mass. The objective of this study was to use computed tomography (CT) to develop a model for determining body condition index (BCI) in free-ranging Blanding's turtles (Emydoidea blandingii). Mass, shell measurements, and FV were measured by CT in 65 free-ranging Blanding's turtles from Lake and DuPage counties in Illinois. Twenty-one different models were built for BCI using both FV and fat percentage (FP) as dependent variables. The best fit model for FP included the relationship between mass and carapace length with nearly 60% model support. The model for FV demonstrated a similar relationship but had only 18% support. Linear models with BCI as the dependent variable showed that juveniles had a higher FP than adults and females with more eggs had a lower FP. FP can be calculated in the field with nearly 60% accuracy compared to CT-assessed FP as a component of a physical exam and population health survey to assess the effectiveness of conservation efforts for the endangered Blanding's turtle.
机译:自由量大种群的健康评估需要综合方法,通常包含一种衡量质量作为动物利用环境资源的能力的方法。在Chelonians中,大规模的直接测量历史上曾经是体质的推论。然而,该方法可能无法准确地表示真脂肪量(FV),并且可以通过鸡蛋,壳体尺寸或肌肉质量的存在倾斜。本研究的目的是使用计算机断层扫描(CT)来开发用于在自由范围的乌龟(emydoideaBlandingii)中确定身体状况指数(BCI)的模型。 CT在来自伊利诺伊州的湖泊和杜帕奇县的65个自由的蓝色乌龟中测量质量,壳体测量和Fv。使用FV和FAT百分比(FP)作为依赖变量,为BCI构建了二十一种不同的模型。 FP的最佳拟合模型包括近60%型号的质量和甲壳长度之间的关系。 Fv模型显示了类似的关系,但支撑只有18%。随着受抚养变量的线性模型显示,随着受抚养变量的表明,少年的FP比成年人和女性更多的鸡蛋有较低的FP。与CT评估的FP相比,FP可以在该领域计算,与CT评估的FP相比,作为物理考试和人口健康调查的组成部分,以评估濒危平淡的乌龟保护努力的有效性。

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