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Development and field testing a satellite-linked fluorometer for marine vertebrates

机译:开发和现场测试用于海洋脊椎动物的卫星荧光计

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Background Understanding the responses of marine vertebrates to spatial and temporal variability of primary productivity is fundamental for their conservation and for predicting how they will be affected by climate change. Despite recent advances in biotelemetry, fluorometers have only recently been incorporated into larger transmitting systems. The purpose of this project was to incorporate a miniature fluorometer into a satellite-linked transmitter to provide measures of in situ phytoplankton fluorescence, which were used to calculate chlorophyll- a (chl- a ), a proxy for primary productivity. After evaluating the suitability of commercially available fluorometers, the ECO Puck? (WET Labs, Philomath, OR), which measures chl- a (0 to 75?μg Chl/L), was first interfaced with an archival instrument (TDR10) manufactured by Wildlife Computers (Redmond, WA, USA) to (1) determine if the interfaced prototype functioned properly, (2) examine data relative to the orientation of the optics, (3) monitor the behavior of tagged animals, and (4) collect a complete dive/sensor record to validate a data reduction routine established for Service Argos and verify performance of the Argos message generation.
机译:背景技术了解海洋脊椎动物对初级生产力的时空变化的响应,对于其保护和预测其将如何受到气候变化的影响至关重要。尽管生物遥测技术取得了最新进展,但荧光计直到最近才被纳入更大的发射系统中。该项目的目的是将微型荧光计集成到与卫星相连的发射器中,以提供原位浮游植物荧光的测量值,这些测量值用于计算叶绿素-a(chl-a)(主要生产力的代表)。在评估了市售荧光计的适用性之后,ECO Puck? (WET Labs,Philomath,OR)可以测量chl-(0至75?g g Chl / L),首先与Wildlife Computers(美国华盛顿州雷德蒙德)生产的档案仪器(TDR10)连接,用于(1)确定接口的原型是否正常运行,(2)检查与光学器件的方向有关的数据,(3)监视标记动物的行为,(4)收集完整的潜水/传感器记录,以验证针对服务Argos并验证Argos消息生成的性能。

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