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钓放捕鱼导致的缺氧对认知的短暂影响。

Transient cognitive impacts of oxygen deprivation caused by catch-and-release angling.

作者信息

Flink Henrik, Berge Adrian, Leggieri Francesca, Kolm Niclas, Tibblin Petter

机构信息

Centre for Ecology and Evolution in Microbial Model Systems (EEMiS), Department of Biology and Environmental Science, Faculty of Health and Life Sciences, Linnaeus University, Kalmar 39231, Sweden.

River Ecology and Management Research Group RivEM, Department of Environmental and Life Sciences, Karlstad University, Karlstad, Sweden.

出版信息

Biol Lett. 2025 Jan;21(1):20240527. doi: 10.1098/rsbl.2024.0527. Epub 2025 Jan 15.

Abstract

Vertebrate brain function is particularly sensitive to the effects of hypoxia, with even brief periods of oxygen deprivation causing significant brain damage and impaired cognitive abilities. This study is the first to investigate the cognitive consequences of hypoxia in fish, specifically induced by exhaustive exercise and air exposure, conditions commonly encountered during catch-and-release (C&R) practices in recreational fishing. Angling exerts substantial pressure on inland fish populations, underscoring the need for sustainable practices like C&R. While C&R survival rates are generally high, understanding its sublethal impacts is crucial for evaluating the practice's ethical and ecological sustainability. We examined the effects of these stressors on the cognitive function of 238 rainbow trout, using the free movement pattern Y-maze method to assess working memory through navigational search patterns during free exploration sessions. Our results showed that air exposure led to short-term (3-4 h post-treatment), but transient impairments in working memory, with no long-term cognitive deficits observed at one week and one month post-treatment. These findings emphasize the high tolerance of fish to hypoxia and support the sustainability of C&R as a tool in fisheries management.

摘要

脊椎动物的大脑功能对缺氧影响尤为敏感,即使是短暂的缺氧也会导致严重的脑损伤和认知能力受损。本研究首次调查了鱼类缺氧的认知后果,特别是由剧烈运动和空气暴露引起的缺氧,这些情况在休闲钓鱼的钓获放流(C&R)操作中很常见。垂钓对内陆鱼类种群施加了巨大压力,凸显了C&R等可持续做法的必要性。虽然C&R的存活率通常较高,但了解其亚致死影响对于评估该做法的伦理和生态可持续性至关重要。我们使用自由运动模式Y迷宫方法,通过自由探索阶段的导航搜索模式来评估工作记忆,研究了这些应激源对238条虹鳟鱼认知功能的影响。我们的结果表明,空气暴露导致工作记忆出现短期(处理后3-4小时)但短暂的损伤,在处理后一周和一个月未观察到长期认知缺陷。这些发现强调了鱼类对缺氧的高耐受性,并支持将C&R作为渔业管理工具的可持续性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c03/11732411/8968858f0607/rsbl.2024.0527.f001.jpg

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