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Interactions Between Platform Terminal Transmitters and Turtle Excluder Devices

机译:平台终端变送器与Turtle Excluder设备之间的相互作用

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摘要

Satellite telemetry is a common tool for examining sea turtle movements, and many research programs have successfully tracked adults. Relatively short satellite track durations recorded for juvenile Kemp’s ridley sea turtles, Lepidochelys kempii, in the northwestern Gulfudof Mexico raised questions regarding premature transmission loss. We examined interactions between juvenile sea turtlesudoutfitted with platform terminal transmitters (PTT’s) and turtle excluder devices (TED’s) and the potential for transmission loss due to this interaction. A pilot studyudwas conducted with eight 34-month-old, captive-reared loggerhead sea turtles, Caretta caretta; a larger trial the following year used twenty 34-month-olds. Half of the turtles in each trial were outfitted with dummy PTT’s (8×4×2 cm), and all turtles were sent through a trawl equipped with a bottom-opening Super-Shooter TED. No apparent damage was sustained by any PTT, but four of five PTT-outfitted loggerheads encountering the TED carapace-first exhibited increased escape times when the PTT wedged between the TED deflector bars (10.2 cm apart). Overall, 15 loggerheads (54%) impacted the TED carapace-first. Attachment of PTT’s to smaller sea turtles may slow or, in worst cases, inhibit escape from TED’s. Likewise, loose orudpoorly secured PTT’s could impede escape or be shed during such an interaction. Researchers tracking small turtles in or near regions with trawling activity should consider PTT size and shape and the combined PTT/adhesive profile to minimize potentially detrimental interactions with TED’s.
机译:卫星遥测是检查海龟运动的常用工具,许多研究计划已成功跟踪了成年成年人。在墨西哥西北海湾 udof的肯普幼体瑞德利海龟Lepidochelys kempii记录的卫星轨道持续时间相对较短,这引发了有关过早传播损失的问题。我们研究了不带平台终端发射器(PTT)和海龟排除装置(TED)的幼海龟之间的相互作用,以及由于这种相互作用而造成的传播损失的可能性。对八只34个月大,圈养的logger海龟(Caretta caretta)进行了初步研究。次年进行的一次较大的试验使用了20个34个月大的婴儿。在每个试验中,有一半的乌龟都配备了虚拟的PTT(8×4×2厘米),所有乌龟都通过配备有开底Super-Shooter TED的拖网送入。任何PTT都没有明显的损坏,但是当PTT楔入TED导流条之间(相距10.2厘米)时,遇到TED甲壳的5个装备PTT的记录头中有四个表现出增加的逃逸时间。总体而言,有15个头(54%)影响了TED甲壳。将PTT安装在较小的海龟上可能会减慢速度,或者在最坏的情况下,会阻止从TED的逃脱。同样,在这种互动过程中,松散的或未充分固定的PTT可能会阻止脱逃或掉落。追踪活动范围内或附近区域中的小海龟的研究人员应考虑PTT的大小和形状以及组合的PTT /粘合剂分布,以最大程度地减少与T​​ED的潜在有害相互作用。

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