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首页> 外文期刊>Journal of Ecohydraulics >Do rearing salmonids predictably occupy physical microhabitat?
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Do rearing salmonids predictably occupy physical microhabitat?

机译:饲养鲑鱼是否可预测地占据物理微藻?

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Microhabitat suitability models are commonly used to estimate salmonid habitat abundance and quality with unknown accuracy or reliability. When tested, the metrics used to evaluate these models are often limited by the methods used to develop them. More generalized bioverification strategies that transcend methodology are therefore needed in ecohydraulics. This study further developed and applied such a generalized bioverification framework to four approximately 1-m-resolution rearing salmonid microhabitat suitability models. Water depth and velocity habitat suitability criteria (HSC) functions were developed for two size classes of rearing Oncorhynchus tshawytscha and O. mykiss using snorkel survey data collected over three years at seven sites along the lower Yuba River in California, USA. An expert-based cover HSC function was modified from previous studies. HSC functions were applied to previously validated, approximately 1-m-resolution two-dimensional hydrodynamic models and cover maps of the river. Mann-Whitney U tests confirmed that suitability values were significantly higher at utilized locations compared to randomly generated, non-utilized locations for all four models. Bootstrapped forage ratios demonstrated that microhabitat suitability models accurately predicted both preferred and avoided habitat beyond the 95% confidence level. This generalized bioverification framework is recommended for evaluating and comparing the accuracy and reliability of ecohydraulic models used in habitat management worldwide.
机译:微藏宝合适性模型通常用于估计沙明栖息地丰富和质量,具有未知的准确性或可靠性。测试时,用于评估这些模型的指标通常受到用于开发它们的方法的限制。因此,需要在EcoRefrics中需要超越方法的概括的生物化化策略。该研究进一步开发并应用了这种广义的生物化框架至四个大约1M分辨率饲养的鲑鱼微藏宝藏合适性模型。水深和速度栖息地适用性标准(HSC)职能是为两种尺寸的饲养Oncorhynchus Tshawytscha和O. Mykiss使用浮潜调查数据,在美国加利福尼亚州加利福尼亚州的下部雪地河上的七个地点收集了三年。基于专家的封面HSC功能从以前的研究中修改过。 HSC功能应用于先前验证的大约1米分辨率的二维流体动力学模型和覆盖河的地图。与所有四种模型的随机产生的非利用位置相比,Mann-Whitney U测试确认在利用位置的使用率显着更高。搬运的牧草比率表明,微藏宝签名适用性模型准确地预测了优选的,避免栖息地超出95%的置信水平。推荐该广泛的生物化框架进行评估和比较全球栖息地管理中使用的生态液流模型的准确性和可靠性。

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