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Effects of Diving and Swimming Behavior on Body Temperatures of Pacific Leatherback Turtles in Tropical Seas

机译:潜水和游泳行为对热带海域太平洋棱皮龟体温的影响

摘要

Mathematical models and recordings of cloacal temperature suggest that leatherback turtles (Dermochelys coriacea) maintain core body temperature higher than ambient water temperature (TW) while freely swimming at sea. We investigated the thermoregulatory capabilities of free‐ranging leatherbacks and, specifically, the effect that changes in diving patterns and ambient temperatures have on leatherback body temperatures (TB). Data loggers were used to record subcarapace and gastrointestinal tract temperatures (TSC and TGT, respectively), TW, swim speed, dive depth, and dive times of female leatherback turtles during internesting intervals off the coast of Guanacaste, Costa Rica. Mean TSC (28.7°–29.0°C) was significantly higher than mean TW (25.0°–27.5°C). There was a significant positive relationship between TSC and TW and a significant negative correlation between TSC and dive depth and TGT and dive depth. Rapid fluctuations in TGT occurred during the first several days of the internesting interval, which suggests that turtles were ingesting prey or water during this time. Turtles spent 79%–91% of the time at sea swimming at speeds greater than 0.2 m s−1, and the average swim speed was m s−1. Results from this study show that alterations in diving behavior and TW affect TB of leatherback turtles in the tropics. Body temperatures of free‐ranging leatherback turtles correspond well with values for TB predicted by mathematical models for tropical conditions.
机译:泄殖腔温度的数学模型和记录表明,棱皮海龟(Dermochelys coriacea)在海上自由游泳时,其核心体温保持高于环境水温(TW)。我们研究了自由放养的棱皮背的体温调节能力,特别是潜水模式和环境温度的变化对棱皮背体温(TB)的影响。数据记录仪用于记录哥斯达黎加瓜纳卡斯特沿岸的间隔时间内雌性棱皮海龟的甲壳下和胃肠道温度(分别为TSC和TGT),TW,游泳速度,潜水深度和潜水时间。平均TSC(28.7°–29.0°C)显着高于平均TW(25.0°–27.5°C)。 TSC与TW之间存在显着的正相关,而TSC与潜水深度之间以及TGT与潜水深度之间存在显着的负相关。在交互间隔的前几天,TGT发生了快速波动,这表明在这段时间内乌龟正在摄取猎物或水。海龟以超过0.2 m s-1的速度在海上游泳花费了79%–91%的时间,平均游泳速度为m s-1。这项研究的结果表明,潜水行为和TW的改变会影响热带棱皮龟的TB。自由放养的棱皮海龟的体温与热带条件数学模型预测的TB值非常吻合。

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