Action science in practice: Co-production of a decision support tool visualizing effects of nutrient and hypoxia reduction goals on fisheries species

IF 1.8 3区 农林科学 Q2 FISHERIES
Michelle Shaffer, Sara Mariott, Kristy A. Lewis, Joe Buszowski, Kim de Mutsert
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引用次数: 0

Abstract

Objective

The Gulf of Mexico hosts some of the most productive fisheries in the United States, whereas the same region is known to experience environmental stressors, such as summer hypoxia. Ecosystem models have been developed for the Gulf of Mexico to determine how hypoxia affects living marine resources, but these models and their output are not always easy to access or interpret by managers, thereby decreasing their implementation in a management setting. To help alleviate the gap between ecosystem model development and management utility, the current study focuses on co-produced, user-friendly tools that describe the effects of nutrient and hypoxia reductions on marine living resources.

Methods

Two decisions were made prior to the ecosystem model development to facilitate the transfer of model output: (1) to engage and consult fisheries and restoration managers throughout ecosystem model development to ensure that the output would provide relevant information; and (2) to provide an accessible visualization tool for making ecosystem model output readily available to support the needs of decision makers.

Result

Results from an advisory panel survey instrument and advisory panel meetings guided ecosystem model development and launched the development of a decision support tool. The iterative process of building a decision support tool incorporating feedback from survey instrument respondents resulted in an ESRI ArcGIS Dashboard that allows end-users to identify the effects of hypoxia and respondent-specified nutrient and hypoxia reduction goals on the biomass and distribution of fisheries species.

Conclusion

The intent is to aid managers who are actively working to address hypoxia in the Gulf of Mexico with easy-to-access information on the effects of planned actions and to encourage future modelers to apply action science principles to best address the needs of decision makers.

Abstract Image

实践中的行动科学:共同制作决策支持工具,可视化减少营养和缺氧目标对渔业物种的影响
墨西哥湾拥有美国一些最富饶的渔业资源,但该地区也存在环境压力,如夏季缺氧。已为墨西哥湾开发了生态系统模型,以确定缺氧如何影响海洋生物资源,但这些模型及其输出结果并不总是易于管理者访问或解释,从而降低了其在管理环境中的应用。为帮助缓解生态系统模型开发与管理实用性之间的差距,本研究侧重于共同制作用户友好型工具,以描述营养物质和缺氧减少对海洋生物资源的影响:(1) 在整个生态系统模型开发过程中,让渔业和恢复管理者参与进来并征求他们的意见,以确保输出结果能够提供相关信息;(2) 提供一个易于使用的可视化工具,使生态系统模型输出结果能够随时满足决策者的需求。决策支持工具的迭代开发过程吸收了调查问卷受访者的反馈意见,最终形成了 ESRI ArcGIS 控制面板,使最终用户能够识别缺氧和受访者指定的营养和缺氧减少目标对渔业物种的生物量和分布的影响。
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来源期刊
Marine and Coastal Fisheries
Marine and Coastal Fisheries FISHERIES-MARINE & FRESHWATER BIOLOGY
CiteScore
3.40
自引率
5.90%
发文量
40
审稿时长
>12 weeks
期刊介绍: Marine and Coastal Fisheries: Dynamics, Management, and Ecosystem Science publishes original and innovative research that synthesizes information on biological organization across spatial and temporal scales to promote ecologically sound fisheries science and management. This open-access, online journal published by the American Fisheries Society provides an international venue for studies of marine, coastal, and estuarine fisheries, with emphasis on species'' performance and responses to perturbations in their environment, and promotes the development of ecosystem-based fisheries science and management.
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