Skill Characterisation of Sonographer Gaze Patterns during Second Trimester Clinical Fetal Ultrasounds using Time Curves.

Clare Teng, Lok Hin Lee, Jayne Lander, Lior Drukker, Aris T Papageorghiou, Alison J Noble
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Abstract

We present a method for skill characterisation of sonographer gaze patterns while performing routine second trimester fetal anatomy ultrasound scans. The position and scale of fetal anatomical planes during each scan differ because of fetal position, movements and sonographer skill. A standardised reference is required to compare recorded eye-tracking data for skill characterisation. We propose using an affine transformer network to localise the anatomy circumference in video frames, for normalisation of eye-tracking data. We use an event-based data visualisation, time curves, to characterise sonographer scanning patterns. We chose brain and heart anatomical planes because they vary in levels of gaze complexity. Our results show that when sonographers search for the same anatomical plane, even though the landmarks visited are similar, their time curves display different visual patterns. Brain planes also, on average, have more events or landmarks occurring than the heart, which highlights anatomy-specific differences in searching approaches.

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使用时间曲线的妊娠中期超声医师注视模式的技能特征。
我们提出了一种技能表征超声医师凝视模式,同时进行常规中期妊娠胎儿解剖超声扫描。每次扫描时胎儿解剖平面的位置和尺度因胎儿位置、运动和超声技术的不同而不同。需要一个标准化的参考来比较记录的眼球追踪数据,以确定技能特征。我们建议使用仿射变压器网络来定位视频帧中的解剖周长,以实现眼动追踪数据的规范化。我们使用基于事件的数据可视化,时间曲线,来表征超声扫描模式。我们之所以选择大脑和心脏解剖平面,是因为它们的凝视复杂性水平不同。我们的研究结果表明,当超声检查者搜索同一解剖平面时,即使所访问的地标相似,他们的时间曲线显示不同的视觉模式。平均而言,脑平面比心脏有更多的事件或里程碑发生,这突出了搜索方法的解剖特异性差异。
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Visualising Spatio-Temporal Gaze Characteristics for Exploratory Data Analysis in Clinical Fetal Ultrasound Scans. Skill Characterisation of Sonographer Gaze Patterns during Second Trimester Clinical Fetal Ultrasounds using Time Curves. Eye Tracking: Background, Methods, and Applications Fixational stability as a measure for the recovery of visual function in amblyopia. Post-processing integration and semi-automated analysis of eye-tracking and motion-capture data obtained in immersive virtual reality environments to measure visuomotor integration.
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