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User-centred system design approach applied on a robotic flexible endoscope

机译:以用户为中心的系统设计方法在机器人柔性内窥镜上的应用

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摘要

Complex systems, like surgical robots, are designed by engineers. It is very difficult for them to determine the different needs and desires of all stakeholders. Especially when designed from scratch, end user input is essential in creating a system that has added value, is user friendly, and can be easily integrated into practice. For the development of a robotic flexible endoscope we have involved physicians, nurses, and equipment suppliers in our design approach. Seven steps are executed to convert user preferences and capabilities into concepts: *Determine focus area of development. *Create the current workflow of system application to understand (the context of) use. *Determine problem definition and design goal. *Create the future workflow, in which current problems are eliminated and major system wishes are fulfilled. *Translate the future workflow into a functional overview that contains system functions. *Select and configure the appropriate construction elements into physical overviews, being preliminary concepts. *Decompose physical overview into manageable modules. These views are evaluated by the major stakeholders and together form a system architecture. The system architecture helped us in defining the robotic modules required to fulfill all stakeholders needs and desires. Demonstrators were built to evaluate critical concepts in clinical relevant experiments.
机译:复杂的系统,例如外科手术机器人,是由工程师设计的。他们很难确定所有利益相关者的不同需求。特别是当从头开始设计时,最终用户的输入对于创建具有附加值,用户友好并且可以轻松集成到实践中的系统至关重要。为了开发机器人柔性内窥镜,我们让医生,护士和设备供应商参与了我们的设计方法。执行七个步骤将用户的喜好和功能转换为概念:*确定开发的重点领域。 *创建系统应用程序的当前工作流程以了解(上下文)使用情况。 *确定问题的定义和设计目标。 *创建未来的工作流程,消除当前的问题并满足主要的系统需求。 *将未来的工作流程转换为包含系统功能的功能概述。 *选择适当的构造要素并将其配置到物理概览中,这是初步的概念。 *将物理概览分解为可管理的模块。这些视图由主要利益相关者评估,并一起形成系统架构。系统架构帮助我们定义了满足所有涉众需求和期望所需的机器人模块。建立了演示者以评估临床相关实验中的关键概念。

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