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Assessment and prediction of electroshocked-induced injury in North American fishes.

机译:北美鱼类电击致伤的评估和预测。

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摘要

Electrofishing has served as an efficient method for scientific sampling of freshwater fishes since the mid-1900s, but it has become apparent since the 1990's that electroshock can cause fish injury. Electroshock-induced fish injury (damage to hard or soft tissues), which is primarily manifested as vertebral fracture or hemorrhage (broken blood vessels) along the backbone, can be a critical determinant of fish survival. The ability to predict factors influencing fish injury rate (the proportion of injured fish in a sample) would be very useful to biologists. To test the null hypothesis of no effect of electrical waveform (W), voltage gradient (E), and fish size (S) on injury rate, I conducted controlled electroshock experiments on chinook salmon Oncorhynchus tshawytscha, rainbow trout O. mykiss, channel catfish Ictalurus punctatus, largemouth bass Micropterus salmoides, bluegill Lepomis macrochirus, and hybrid striped bass Morone saxatalis × M. chrysops. Data collected included electrical stimulus, fish behavioral response (R), length (L) and weight (W), and injury status (present/absent). Vertebral injury was determined using radiography, and hemorrhage by bilateral filleting. My model selection criteria, which was based on Akaike's Information Criterion (AIC), indicated that risks for both types of injury in chinook salmon and channel catfish were best represented by the (W, E, S) model, the (W, S) model for both types of injury in rainbow trout, the (W, E) model for hemorrhage and the (W, E, S) model for vertebral injury in largemouth bass, the (W) model for both injury types in hybrid striped bass, and, that risk for injury in bluegill injury was best described by the null model (no effect of W, E, S). A mechanistic model relating electrical stimulus, the force of contraction, and the resistance to contraction to electroshock-induced injury, using (R) as a surrogate for electrical stimulus, (L) as a surrogate for force of contraction, and vertebral count (V) as a surrogate of resistance to injury, was explored. Application of the mechanistic model (R, L, V) to the pooled data set demonstrated a strong predictive relationship. This model offers guidance for the reduction and prevention of electroshock-induced injury for all species in all situations.
机译:自1900年代中期以来,电钓鱼已成为科学采样淡水鱼的有效方法,但自1990年代以来,电击可导致鱼类受伤的现象已变得显而易见。电击引起的鱼类伤害(对硬组织或软组织的伤害)主要表现为脊椎骨折或骨干出血(血管破裂),可能是鱼类存活的关键因素。预测影响鱼类伤害率(样品中受损鱼类比例)的因素的能力对生物学家非常有用。为了检验电波形(W),电压梯度(E)和鱼类大小(S)对伤害率没有影响的零假设,我对彩虹的奇努克鲑鱼(斜体)进行了受控电击实验,鳟鱼 O。 mykiss ,channel鱼 Ictalurus punctatus ,大嘴鲈鱼盐生小鳍p鱼,blue鱼 Lepomis macrochirus 和混合条纹鲈鱼 Morone saxatalis × ch.sops 。收集的数据包括电刺激,鱼类行为反应(R),长度(L)和体重(W)以及伤害状态(当前/不存在)。使用放射线照相术测定椎骨损伤,并通过双侧圆角检查确定出血。我基于Akaike的信息标准(AIC)的模型选择标准表明,用(W,E,S)模型,(W,S)最好地代表了奇努克鲑和channel鱼两种类型的伤害风险虹鳟的两种伤害模型,出血的(W,E)模型和大口黑鲈的椎体伤害的(W,E,S)模型,混合条纹鲈的两种伤害类型的(W)模型,而且,用无效模型最好地描述了g虫受伤的风险(W,E,S无影响)。一种将电刺激,收缩力以及对电击诱发的损伤的抵抗力相关的机械模型,使用(R)替代电刺激,(L)替代收缩力和椎骨计数(V )作为抗伤害性的替代品,已被探索。机械模型(R,L,V)在汇总数据集中的应用显示出很强的预测关系。该模型为减少和预防所有情况下所有物种的电击所致伤害提供了指导。

著录项

  • 作者

    Holliman, Farland Michael.;

  • 作者单位

    University of Alaska Fairbanks.;

  • 授予单位 University of Alaska Fairbanks.;
  • 学科 Agriculture Fisheries and Aquaculture.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

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