School of Computing Science, Simon Fraser University, 8888 University Drive, Burnaby, BC, V5A 1S6, Canada.
J Digit Imaging. 2011 Feb;24(1):96-106. doi: 10.1007/s10278-009-9247-z. Epub 2009 Nov 10.
In current radiologists' workstations, a scroll mouse is typically used as the primary input device for navigating image slices and conducting operations on an image. Radiological analysis and diagnosis rely on careful observation and annotation of medical images. During analysis of 3D MRI and CT volumes, thousands of mouse clicks are performed everyday, which can cause wrist fatigue. This paper presents a dynamic control-to-display (C-D) gain mouse movement method, controlled by an eyegaze tracker as the target predictor. By adjusting the C-D gain according to the distance to the target, the mouse click targeting time is reduced. Our theoretical and experimental studies show that the mouse movement time to a known target can be reduced by up to 15%. We also present an experiment with 12 participants to evaluate the role of eyegaze targeting in the realistic situation of unknown target positions. These results indicate that using eyegaze to predict the target position, the dynamic C-D gain method can improve pointing performance by 8% and reduce the error rate over traditional mouse movement.
在当前的放射科工作台上,滚动鼠标通常是用于导航图像切片和对图像进行操作的主要输入设备。放射学分析和诊断依赖于对医学图像的仔细观察和注释。在分析 3D MRI 和 CT 容积时,每天要进行数千次鼠标点击操作,这可能会导致手腕疲劳。本文提出了一种基于眼球追踪器作为目标预测器的动态控制-显示 (C-D) 增益鼠标移动方法。通过根据与目标的距离调整 C-D 增益,可以减少鼠标点击目标的时间。我们的理论和实验研究表明,鼠标移动到已知目标的时间可以减少多达 15%。我们还进行了一项有 12 名参与者参与的实验,以评估在未知目标位置的现实情况下眼球注视目标在其中的作用。这些结果表明,使用眼球注视来预测目标位置,动态 C-D 增益方法可以提高 8%的指向性能,并降低传统鼠标移动的错误率。