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The Enzyme Portal: a case study in applying user-centred design methods in bioinformatics

机译:酶门户网站:在生物信息学中应用以用户为中心的设计方法的案例研究

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User-centred design (UCD) is a type of user interface design in which the needs and desires of users are taken into account at each stage of the design process for a service or product; often for software applications and websites. Its goal is to facilitate the design of software that is both useful and easy to use. To achieve this, you must characterise users’ requirements, design suitable interactions to meet their needs, and test your designs using prototypes and real life scenarios. For bioinformatics, there is little practical information available regarding how to carry out UCD in practice. To address this we describe a complete, multi-stage UCD process used for creating a new bioinformatics resource for integrating enzyme information, called the Enzyme Portal ( http://www.ebi.ac.uk/enzymeportal webcite ). This freely-available service mines and displays data about proteins with enzymatic activity from public repositories via a single search, and includes biochemical reactions, biological pathways, small molecule chemistry, disease information, 3D protein structures and relevant scientific literature. We employed several UCD techniques, including: persona development, interviews, ‘canvas sort’ card sorting, user workflows, usability testing and others. Our hope is that this case study will motivate the reader to apply similar UCD approaches to their own software design for bioinformatics. Indeed, we found the benefits included more effective decision-making for design ideas and technologies; enhanced team-working and communication; cost effectiveness; and ultimately a service that more closely meets the needs of our target audience.
机译:以用户为中心的设计(UCD)是一种用户界面设计,其中在服务或产品的设计过程的每个阶段都要考虑到用户的需求和期望。通常用于软件应用程序和网站。其目标是促进有用且易于使用的软件设计。为此,您必须表征用户的需求,设计合适的交互方式以满足他们的需求,并使用原型和真实场景来测试您的设计。对于生物信息学,几乎没有关于如何在实践中进行UCD的实用信息。为了解决这个问题,我们描述了一个完整的,多阶段的UCD过程,该过程用于创建用于整合酶信息的新生物信息学资源,称为酶门户(http://www.ebi.ac.uk/enzymeportal webcite)。这项免费提供的服务可通过一次搜索从公共存储库中挖掘和显示有关具有酶活性的蛋白质的数据,包括生化反应,生物途径,小分子化学,疾病信息,3D蛋白质结构和相关的科学文献。我们采用了多种UCD技术,包括:角色开发,采访,“画布排序”卡排序,用户工作流程,可用性测试等。我们希望该案例研究能够激发读者将类似的UCD方法应用于他们自己的生物信息学软件设计。确实,我们发现好处包括对设计思想和技术进行更有效的决策;加强团队合作和沟通;成本效益;最终提供的服务更能满足我们目标受众的需求。

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