Target Expansion Lens: It is Not the More Visual Feedback the Better!

Maxime Guillon, F. Leitner, L. Nigay
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引用次数: 7

Abstract

To enhance pointing tasks, target expansion techniques allocate larger activation areas to targets. We distinguish two basic elements of a target expansion technique: the expansion algorithm and the visual aid on the effective expanded targets. We present a systematic analysis of the relevance of the visual aid provided by (1) existing target expansion techniques and (2) Expansion Lens. The latter is a new continuous technique for acquiring targets. Expansion Lens namely, uses a round area centered on the cursor: the lens. The users can see in the lens the target expanded area boundaries that the lens is hovering over. Expansion Lens serves as a magic lens revealing the underlying expansion algorithm. The design rationale of Expansion Lens is based on a systematic analysis of the relevance of the visual aid according to the three goal-oriented phases of a pointing task namely the starting, transfer and validation phases. Expansion Lens optimizes (1) the transfer phase by providing a simple-shaped visual aid centered on the cursor, and (2) the validation phase regarding error rates, by displaying the target expanded area boundaries. The results of our controlled experiment comparing Expansion Lens with four existing target expansion techniques show that Expansion Lens highlights a good trade-off for performance by being the less-error prone technique and the second fastest technique. The experimental data for each phase of the pointing task also confirm our design approach based on the relevance of the visual aid according to the phase of the pointing task.
目标扩展镜头:并不是视觉反馈越多越好!
为了增强指向任务,目标扩展技术将更大的激活区域分配给目标。我们区分了目标扩展技术的两个基本要素:扩展算法和有效扩展目标的视觉辅助。我们系统地分析了(1)现有目标扩展技术和(2)扩展透镜提供的视觉辅助的相关性。后者是一种新的连续目标获取技术。即扩展透镜,使用以光标为中心的圆形区域:透镜。用户可以在镜头中看到镜头悬停在上方的目标扩展区域边界。扩展透镜作为一个神奇的透镜,揭示了底层的扩展算法。扩展透镜的设计原理是基于对视觉辅助的相关性的系统分析,根据指向任务的三个面向目标的阶段,即启动,转移和验证阶段。Expansion Lens通过提供以光标为中心的简单形状的视觉辅助来优化(1)转移阶段,以及(2)关于错误率的验证阶段,通过显示目标扩展区域边界来优化。我们的对照实验结果将Expansion Lens与四种现有的目标扩展技术进行了比较,结果表明Expansion Lens突出了性能上的良好权衡,它是较不容易出错的技术和第二快的技术。指向任务的各个阶段的实验数据也证实了我们基于视觉辅助根据指向任务的阶段的相关性的设计方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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