Software codesign between end users and developers to enhance utility for biodiversity conservation.

IF 7.6 1区 生物学 Q1 BIOLOGY BioScience Pub Date : 2024-10-22 eCollection Date: 2024-12-01 DOI:10.1093/biosci/biae097
Mary E Blair, Elkin A Noguera-Urbano, Jose Manuel Ochoa-Quintero, Andrea Paz, Cristina Lopez-Gallego, María Ángela Echeverry-Galvis, Juan Zuloaga, Pilar Rodríguez, Leonardo Lemus-Mejia, Peter Ersts, Daniel F López-Lozano, Matthew E Aiello-Lammens, Hector M Arango, Leonardo Buitrago, Samuel Chang Triguero, Cristian A Cruz-Rodríguez, Juan F Díaz-Nieto, Dairo Escobar, Valentina Grisales-Betancur, Bethany A Johnson, Jamie M Kass, María C Londoño-Murcia, Cory Merow, Carlos J Muñoz-Rodríguez, María Helena Olaya-Rodríguez, Juan L Parra, Gonzalo E Pinilla-Buitrago, Nicolette S Roach, Octavio Rojas-Soto, Néstor Roncancio-Duque, Erika Suárez-Valencia, J Nicolás Urbina-Cardona, Jorge Velásquez-Tibatá, Camilo A Zapata-Martinez, Robert P Anderson
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Abstract

Creating software tools that address the needs of a wide range of decision-makers requires the inclusion of differing perspectives throughout the development process. Software tools for biodiversity conservation often fall short in this regard, partly because broad decision-maker needs may exceed the toolkits of single research groups or even institutions. We show that participatory, collaborative codesign enhances the utility of software tools for better decision-making in biodiversity conservation planning, as demonstrated by our experiences developing a set of integrated tools in Colombia. Specifically, we undertook an interdisciplinary, multi-institutional collaboration of ecological modelers, software engineers, and a diverse profile of potential end users, including decision-makers, conservation practitioners, and biodiversity experts. We leveraged and modified common paradigms of software production, including codesign and agile development, to facilitate collaboration through all stages (including conceptualization, development, testing, and feedback) to ensure the accessibility and applicability of the new tools to inform decision-making for biodiversity conservation planning.

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终端用户和开发者之间的软件协同设计,提高生物多样性保护的效用。
创建满足大量决策者需求的软件工具需要在整个开发过程中包含不同的观点。在这方面,用于生物多样性保护的软件工具往往不足,部分原因是决策者的广泛需求可能超过单个研究小组甚至机构的工具包。我们通过在哥伦比亚开发一套综合工具的经验证明,参与式、协作式协同设计增强了软件工具在生物多样性保护规划中更好决策的效用。具体而言,我们开展了跨学科、多机构的合作,参与者包括生态建模者、软件工程师和潜在最终用户,包括决策者、保护从业者和生物多样性专家。我们利用并修改了软件生产的通用范例,包括协同设计和敏捷开发,以促进所有阶段(包括概念化、开发、测试和反馈)的协作,以确保新工具的可访问性和适用性,从而为生物多样性保护规划的决策提供信息。
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来源期刊
BioScience
BioScience 生物-生物学
CiteScore
14.10
自引率
2.00%
发文量
109
审稿时长
3 months
期刊介绍: BioScience is a monthly journal that has been in publication since 1964. It provides readers with authoritative and current overviews of biological research. The journal is peer-reviewed and heavily cited, making it a reliable source for researchers, educators, and students. In addition to research articles, BioScience also covers topics such as biology education, public policy, history, and the fundamental principles of the biological sciences. This makes the content accessible to a wide range of readers. The journal includes professionally written feature articles that explore the latest advancements in biology. It also features discussions on professional issues, book reviews, news about the American Institute of Biological Sciences (AIBS), and columns on policy (Washington Watch) and education (Eye on Education).
期刊最新文献
A conceptual classification scheme of invasion science. Bee pollination and bee decline: A study about university students' Knowledge and its educational implication. Software codesign between end users and developers to enhance utility for biodiversity conservation. Global proliferation of nonnative plants is a major driver of insect invasions. Framing challenges and polarized issues in invasion science: toward an interdisciplinary agenda.
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