Department of Natural Resources Science, University of Rhode Island, Kingston, Rhode Island, United States.
Northeast Fisheries Science Center, National Oceanic and Atmospheric Administration, Woods Hole, Massachusetts, United States.
PeerJ. 2023 Aug 30;11:e15866. doi: 10.7717/peerj.15866. eCollection 2023.
Every fall, juvenile sea turtles in the Northwest Atlantic Ocean are threatened by rapidly declining water temperatures. When sea turtles become hypothermic, or cold-stunned, they lose mobility-either at the surface, subsurface, or the bottom of the water column-and eventually strand at the shoreline where rescue teams associated with the Sea Turtle Stranding and Salvage Network may search for them. Understanding the effects of ocean currents on the potential stranding locations of cold-stunned sea turtles is essential to better understand stranding hotspots and increase the probability of successful discovery and recovery of turtles before they die in the cold temperatures. Traditional oceanographic drifters-instruments used to track currents-have been used to examine relationships between current and stranding locations in Cape Cod Bay, but these drifters are not representative of sea turtle morphology and do not assess how bottom currents affect stranding locations. To address these knowledge gaps, we designed new drifters that represent the shape and dimensions of sea turtles-one that can float at the surface and one that sinks to the bottom-to track both surface and bottom currents in Cape Cod Bay. We found a marked difference between the trajectories of our new drifter models and those that were previously used for similar research. These findings bring us one step closer to identifying the transport pathways for cold-stunned sea turtles and optimizing cold-stunned sea turtle search and rescue efforts in Cape Cod.
每年秋季,北大西洋的幼年海龟都会受到水温迅速下降的威胁。当海龟体温过低,即出现“冷昏迷”现象时,它们会丧失活动能力——无论是在水面、水面下还是水柱状底部,最终会在岸边搁浅,而与海龟搁浅和救援网络相关的救援团队可能会在那里寻找它们。了解洋流对冷昏迷海龟潜在搁浅地点的影响,对于更好地了解搁浅热点、增加在海龟冻死之前成功发现和救援它们的概率至关重要。传统的海洋漂流浮标——用于追踪海流的仪器——曾被用于研究科德角湾海流与搁浅地点之间的关系,但这些浮标并不代表海龟的形态,也无法评估底层海流如何影响搁浅地点。为了解决这些知识空白,我们设计了新的漂流浮标,它们代表了海龟的形状和尺寸——一种可以漂浮在水面上,一种可以沉到底部——以追踪科德角湾的水面和底层海流。我们发现,我们的新漂流浮标模型的轨迹与之前用于类似研究的模型有明显的不同。这些发现使我们离确定冷昏迷海龟的运输路径又近了一步,并优化了在科德角的冷昏迷海龟搜索和救援工作。