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首页> 外文期刊>Marine Mammal Science >Physical maturity in common bottlenose dolphins (Tursiops truncatus) from Sarasota Bay, Florida
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Physical maturity in common bottlenose dolphins (Tursiops truncatus) from Sarasota Bay, Florida

机译:来自佛罗里达州萨拉索塔湾的普通瓶颈海豚(Tursiops truncatus)的身体成熟

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Cetacean physical maturity is defined by growth cessation and complete fusion of epiphyses to vertebral bodies indicated by invisible sutures. Many studies have shown epiphyseal fusion is highly variable among individuals. In-depth examinations into fusion variability are lacking. We analyzed vertebrae of 37 (n= 21female,n= 16male) stranded common bottlenose dolphins (Tursiops truncatus) from the well-studied Gulf of Mexico, Sarasota Bay community. For each specimen, vertebrae were examined by vertebral region for degree of fusion anteriorly and posteriorly of each centrum and categorized from unfused to fused in five degrees. An ordinal logistic regression was used to estimate degree of fusion probability for each epiphysis. The model had fixed effects for age, number of offspring, sex, sexual maturity, and a random effect for epiphysis. Results show that age/reproductive status significantly explains an individual's degree of fusion. Adult females with fewer calves had more fusion than those with more reproductive experience across multiple ages. Access to long-term observational and sample data on the dolphins residing in the area served by Mote Marine Laboratory's Stranding Investigations Program offers a unique opportunity to examine the relationship between energetic demands of reproduction (calcium production/reproductive output) versus preconceived definitions of physical maturity (skeletal fusion) more closely.
机译:鲸类物理成熟度由生长停止和完全融合到隐形缝合线所示的椎体对椎体。许多研究表明,骨骺融合是个体之间的高度变化。深入检查融合变异性缺乏。我们分析了37(n = 21female,n = 16male)的椎骨,来自Sarasota Bay社区的墨西哥普罗夫的富裕的墨西哥湾的普通常见的瓶颈海豚(Tursiops truncatus)。对于每个试样,通过椎骨区域检查椎骨,每份rust的椎间融合程度,并分类为在5度以未用来融合。序数逻辑回归用于估计每种骨骺的融合概率程度。该模型对年龄,后代,性别,性成熟度和骨骺的随机效应有固定效果。结果表明,年龄/生殖状态明显解释了个人的融合程度。成年女性较少的小牛的融合比多年代多年来更生殖体验更融合。获取居住在Mote Marine实验室的搁浅调查计划服务的海豚的长期观测和样本数据提供了一个独特的机会,可以检查能量对生殖需求(钙生产/生殖输出)与物理成熟的先注定义之间的关系(骨骼融合)更仔细。

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