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首页> 外文期刊>Frontiers in Veterinary Science >Evaluation of Serum for Pathophysiological Effects of Prolonged Low Salinity Water Exposure in Displaced Bottlenose Dolphins (Tursiops truncatus)
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Evaluation of Serum for Pathophysiological Effects of Prolonged Low Salinity Water Exposure in Displaced Bottlenose Dolphins (Tursiops truncatus)

机译:置换的宽吻海豚长期低盐度暴露于血清的病理生理效应的评估(Tursiops truncatus)

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We conducted a retrospective study of serum biochemistry and hematologic findings from displaced, out-of-habitat bottlenose dolphins (Tursiops truncatus) exposed to various low salinity environments in waters along the southern United States including southeastern Atlantic and northern Gulf of Mexico. Serum sodium, chloride, and calculated osmolality were significantly lower and below reference ranges in displaced animals compared to free ranging case control animals. This suggests clinical hyponatremia, hypochloremia and hypo-osmolality due to an uptake of low saline water from the environment. In addition, significant differences were found in other serum chemistry variables, although none were outside of normal reference ranges for non-controlled free ranging animals. Multiple linear regressions demonstrated the degree of salinity had a greater pathophysiologic response than the duration of fresh water exposure. The Na/Cl ratio and bicarbonate were the only variables that were significantly modulated by exposure duration. These findings suggest that the degree of salinity is a critical factor when assessing and managing care for dolphins chronically exposed to low salinity water. Results from this study indicate that changes in various biochemical parameters can be used to determine fresh water exposure and aid in determining the treatment for animals recovered from low salinity waters.
机译:我们进行了一项回顾性研究,研究了流离失所,栖息地外的宽吻海豚(Tursiops truncatus)在美国南部(包括东南大西洋和墨西哥湾北部)各种水域中的低盐度环境下的血清生化和血液学发现。与自由放养的病例对照动物相比,在流离失所的动物中,血清钠,氯化物和计算的重量克分子渗透压浓度显着降低并低于参考范围。这表明由于从环境中吸收低盐分的水导致临床低钠血症,低氯血症和低渗透压。此外,在其他血清化学变量中也发现了显着差异,尽管对于不受控制的自由放养动物,均未超出正常参考范围。多元线性回归表明,盐度比暴露于淡水的持续时间具有更大的病理生理反应。 Na / Cl比和碳酸氢盐是唯一受暴露持续时间显着调节的变量。这些发现表明,在评估和管理长期接触低盐度水的海豚时,盐度是关键因素。这项研究的结果表明,各种生化参数的变化可用于确定淡水暴露量,并有助于确定从低盐度水回收的动物的治疗方法。

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