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MovExp: A Versatile Visualization Tool for Human-Computer Interaction Studies with 3D Performance and Biomechanical Data

机译:MovExp:具有3D性能和生物力学数据的人机交互研究的多功能可视化工具

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摘要

In Human-Computer Interaction (HCI), experts seek to evaluate and compare the performance and ergonomics of user interfaces. Recently, a novel cost-efficient method for estimating physical ergonomics and performance has been introduced to HCI. It is based on optical motion capture and biomechanical simulation. It provides a rich source for analyzing human movements summarized in a multidimensional data set. Existing visualization tools do not sufficiently support the HCI experts in analyzing this data. We identified two shortcomings. First, appropriate visual encodings are missing particularly for the biomechanical aspects of the data. Second, the physical setup of the user interface cannot be incorporated explicitly into existing tools. We present MovExp, a versatile visualization tool that supports the evaluation of user interfaces. In particular, it can be easily adapted by the HCI experts to include the physical setup that is being evaluated, and visualize the data on top of it. Furthermore, it provides a variety of visual encodings to communicate muscular loads, movement directions, and other specifics of HCI studies that employ motion capture and biomechanical simulation. In this design study, we follow a problem-driven research approach. Based on a formalization of the visualization needs and the data structure, we formulate technical requirements for the visualization tool and present novel solutions to the analysis needs of the HCI experts. We show the utility of our tool with four case studies from the daily work of our HCI experts.
机译:在人机交互(HCI)中,专家寻求评估和比较用户界面的性能和人体工程学。近来,用于估计物理人体工程学和性能的新颖的具有成本效益的方法已经被引入到HCI中。它基于光学运动捕获和生物力学仿真。它提供了丰富的资源来分析多维数据集中总结的人体运动。现有的可视化工具不足以支持HCI专家分析此数据。我们发现了两个缺点。首先,特别是对于数据的生物力学方面,缺少适当的视觉编码。其次,用户界面的物理设置不能明确地合并到现有工具中。我们介绍了MovExp,这是一种通用的可视化工具,支持对用户界面的评估。特别是,HCI专家可以轻松地对其进行修改,以包括正在评估的物理设置,并在其之上可视化数据。此外,它提供了多种视觉编码,以传达肌肉负荷,运动方向以及采用运动捕捉和生物力学模拟的HCI研究的其他细节。在此设计研究中,我们遵循一种问题驱动的研究方法。基于可视化需求和数据结构的形式化,我们制定了可视化工具的技术要求,并提出了针对HCI专家分析需求的新颖解决方案。我们通过HCI专家的日常工作中的四个案例研究来展示我们工具的实用性。

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