Smartphone form factors: Effects of width and bottom bezel on touch performance, workload, and physical demand
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Smartphone form factors: Effects of width and bottom bezel on touch performance, workload, and physical demand

机译:智能手机形式因素:宽度和底部边框对触摸性能,工作量和物理需求的影响

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AbstractThis study aimed at investigating the effect of two smartphone form factors (width and bottom bezel) on touch behaviors with one-handed interaction. User experiments on tapping tasks were conducted for four widths (67, 70, 72, and 74?mm) and five bottom bezel levels (2.5, 5, 7.5, 10, and 12.5?mm). Task performance, electromyography, and subjective workload data were collected to examine the touch behavior. The success rate and task completion time were collected as task performance measures. The NASA-TLX method was used to observe the subjective workload. The electromyogram signals of two thumb muscles, namely the first dorsal interosseous and abductor pollicis brevis, were observed. The task performances deteriorated with increasing width level. The subjective workload and electromyography data showed similar patterns with the task performances. The task performances of the bottom bezel devices were analyzed by using three different evaluation criteria. The results from these criteria indicated that tasks became increasingly difficult as the bottom bezel level decreased. The results of this study provide insights into the optimal range of smartphone form factors for one-handed interaction, which could contribute to the design of new smartphones.Highlights?The effects of smartphone form factors (width and bottom bezel) on touch behavior was studied in one-handed interaction.?Task performance, electromyography, and subjective workload data were collected to examine the touch behavior.?The results showed that increasing width and decreasing bottom bezel lead to difficulties in performing touch behaviors.?Our findings provided insight into design for smartphone form factors considering one-handed interaction.]]>
机译:<![CDATA [ 抽象 本研究旨在调查两个智能手机形状因子(宽度和底部挡板)与一个触摸行为的效果 - 互动。攻丝任务的用户实验进行了四个宽度(67,70,72和74毫秒)和五个底部边框水平(2.5,5,7.5,10和12.5Ωmm)。收集任务性能,肌电图和主观工作负载数据以检查触摸行为。成功率和任务完成时间被收集为任务绩效措施。 NASA-TLX方法用于观察主观工作量。观察了两根拇指肌的肌电图信号,即第一个背部晶体和Abductor Pollicis Brevis。任务表演随着宽度水平的增加而恶化。主观工作负载和肌电图数据显示了与任务性能相似的模式。通过使用三种不同的评估标准分析了底部边框装置的任务性能。这些标准的结果表明,随着底部边框水平降低,任务变得越来越困难。本研究的结果为单手交互的最佳智能手机形式因素提供了见解,这可能导致新智能手机的设计。 亮点 < CE:标签>? 在单手交互中研究了智能手机形状因子(宽度和底部挡板)的效果。< / ce:para> 收集任务性能,肌电图和主观工作负载数据以检查触摸行为。 结果显示宽度增加和减少底部边框导致执行触摸行为的困难。 < CE:PARA ID =“P0025”View =“全部”>我们的调查结果为考虑单手交互的智能手机形式因子提供了深入了解。 ]]>

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