首页> 美国卫生研究院文献>PLoS Clinical Trials >Use of navigation channels by Lake Sturgeon: Does channelization increase vulnerability of fish to ship strikes?
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Use of navigation channels by Lake Sturgeon: Does channelization increase vulnerability of fish to ship strikes?

机译:urge鱼湖使用航道:航道化是否会增加鱼类对船舶罢工的脆弱性?

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摘要

Channelization for navigation and flood control has altered the hydrology and bathymetry of many large rivers with unknown consequences for fish species that undergo riverine migrations. In this study, we investigated whether altered flow distributions and bathymetry associated with channelization attracted migrating Lake Sturgeon (Acipenser fulvescens) into commercial navigation channels, potentially increasing their exposure to ship strikes. To address this question, we quantified and compared Lake Sturgeon selection for navigation channels vs. alternative pathways in two multi-channel rivers differentially affected by channelization, but free of barriers to sturgeon movement. Acoustic telemetry was used to quantify Lake Sturgeon movements. Under the assumption that Lake Sturgeon navigate by following primary flow paths, acoustic-tagged Lake Sturgeon in the more-channelized lower Detroit River were expected to choose navigation channels over alternative pathways and to exhibit greater selection for navigation channels than conspecifics in the less-channelized lower St. Clair River. Consistent with these predictions, acoustic-tagged Lake Sturgeon in the more-channelized lower Detroit River selected the higher-flow and deeper navigation channels over alternative migration pathways, whereas in the less-channelized lower St. Clair River, individuals primarily used pathways alternative to navigation channels. Lake Sturgeon selection for navigation channels as migratory pathways also was significantly higher in the more-channelized lower Detroit River than in the less-channelized lower St. Clair River. We speculated that use of navigation channels over alternative pathways would increase the spatial overlap of commercial vessels and migrating Lake Sturgeon, potentially enhancing their vulnerability to ship strikes. Results of our study thus demonstrated an association between channelization and the path use of migrating Lake Sturgeon that could prove important for predicting sturgeon-vessel interactions in navigable rivers as well as for understanding how fish interact with their habitat in landscapes altered by human activity.
机译:导航和防洪的渠道化改变了许多大河的水文和测深,对经历河道迁移的鱼类造成了未知的后果。在这项研究中,我们调查了与河道化相关的流量分布和水深变化是否吸引了迁移的A鱼湖(Acipenser fulvescens)进入商业航道,从而潜在地增加了其遭受船舶罢工的风险。为了解决这个问题,我们量化并比较了在受通道化影响不同但没有st鱼运动障碍的两条多河河流中,St鱼湖的航道选择路径与替代路径的选择。声学遥测用于量化Lake鱼湖的运动。在St鱼湖遵循主要流动路径进行导航的假设下,底河较多的底特律河中带有声学标签的St鱼预计会选择替代路径的航道,并且对航道的选择要比沿河道较少的同质物更大。下圣克莱尔河。与这些预测一致,底河较多的底特律河中带有声音标签的St鱼湖在其他迁徙路径上选择了流量较高和较深的航道,而在底河较少的圣克莱尔河下游,人们主要使用了替代路径导航频道。在底河较多的底特律河中,than鱼湖作为航行通道的迁移途径的选择也明显比底河较少的圣克莱尔河中的游urge路径高得多。我们推测,在替代路径上使用导航通道会增加商船的空间重叠和mig鱼湖的迁徙,从而有可能增强其易受船只打击的能力。因此,我们的研究结果证明了渠道化与St鱼湖迁徙的路径使用之间的关联,这对于预测可通航河流中st鱼与船只的相互作用以及理解鱼类如何与其人类活动所改变的景观中的栖息地相互作用具有重要意义。

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