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作 者:Shem Unger Zeb Cline Hull Lauren Diaz John D.Groves Lori A.Williams Catherine M.Bodinof Jachowski
机构地区:[1]Carolina Headwaters,L.L.C.,Mathews,NC,28105,United States [2]Clemson University,Clemson,SC,29634,United States [3]North Carolina Zoological Park(Curator Emeritus),Asheboro,NC,27205,United States [4]North Carolina Wildlife Resources Commission,Raleigh,NC,27606,United States
出 处:《Aquaculture and Fisheries》2021年第1期106-110,共5页渔业学报(英文)
基 金:The North Carolina Wildlife Resources Commission provided the necessary permits for this project(NCWRC 19-ES00286).
摘 要:Captive propagation and translocation are becoming vital components of conservation and management strategies for Eastern hellbender(Cryptobranchus a.alleganiensis)populations.Zoos,aquaria,universities,and state and federal agencies are concomitantly collaborating on the protection,education,and maintenance of captive populations of this unusual,cryptic salamander.Conservation strategies include the use of artificial nesting structures,collection of eggs from the wild,and head-starting individuals in zoos or hatcheries.The effects of these strategies need to be monitored,however,traditional survey and monitoring methods for the species in the wild involves rock-lifting,which has the potential to both harm habitat and alter reproductive behavior.Therefore,there is a need to develop effective,non-invasive and non-destructive methods of monitoring both wild and captive populations of Eastern hellbenders.Herein,we compare two simple,affordable,underwater video and camera systems(borescope and Aqua-Vu cameras)in their ability to 1)facilitate detection of adults under potential cover items and 2)facilitate nest detection and monitoring in both wild and captive environments.Both cameras were successful in detecting individual hellbender presence,albeit with different resolutions and detection times.The borescope was better at accessing deep cavities given its large flexible attachment which allowed for greater flexibility of scanning crevices of adult shelters.However,search time increased and even low levels of suspended sediment reduced visibility with the borescope.The Aqua-Vu camera provided greater overall visibility and faster detection of individuals under both natural and artificial shelters.There was a significant difference in the amount of time required to detect hellbenders with each camera design when searching under natural rocks(borescope:median=67.8 s,Aqua-Vu:median=39.1 s;Kruskal Wallis Test H=15.62,p<0.001)and artificial shelters(borescope:median=30.9 s,Aqua-Vu:median=13 s;Kruskal Wallis Test H=25.23,p
关 键 词:Captive propagation Hellbender Aquatic science Freshwater conservation Underwater camera systems
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