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Mouse cursor movement and eye tracking data as an indicator of pathologists’ attention when viewing digital whole slide images

机译:鼠标光标移动和眼动跟踪数据可作为病理学家在查看数字全幅幻灯片图像时的注意力指标

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Context:Digital pathology has the potential to dramatically alter the way pathologists work, yet little is known about pathologists’ viewing behavior while interpreting digital whole slide images. While tracking pathologist eye movements when viewing digital slides may be the most direct method of capturing pathologists’ viewing strategies, this technique is cumbersome and technically challenging to use in remote settings. Tracking pathologist mouse cursor movements may serve as a practical method of studying digital slide interpretation, and mouse cursor data may illuminate pathologists’ viewing strategies and time expenditures in their interpretive workflow.Aims:To evaluate the utility of mouse cursor movement data, in addition to eye-tracking data, in studying pathologists’ attention and viewing behavior.Settings and Design:Pathologists (N = 7) viewed 10 digital whole slide images of breast tissue that were selected using a random stratified sampling technique to include a range of breast pathology diagnoses (benign/atypia, carcinoma in situ, and invasive breast cancer). A panel of three expert breast pathologists established a consensus diagnosis for each case using a modified Delphi approach.Materials and Methods:Participants’ foveal vision was tracked using SensoMotoric Instruments RED 60 Hz eye-tracking system. Mouse cursor movement was tracked using a custom MATLAB script.Statistical Analysis Used:Data on eye-gaze and mouse cursor position were gathered at fixed intervals and analyzed using distance comparisons and regression analyses by slide diagnosis and pathologist expertise. Pathologists’ accuracy (defined as percent agreement with the expert consensus diagnoses) and efficiency (accuracy and speed) were also analyzed.Results:Mean viewing time per slide was 75.2 seconds (SD = 38.42). Accuracy (percent agreement with expert consensus) by diagnosis type was: 83% (benign/atypia); 48% (carcinoma in situ); and 93% (invasive). Spatial coupling was close between eye-gaze and mouse cursor positions (highest frequency ?x was 4.00px (SD = 16.10), and ?y was 37.50px (SD = 28.08)). Mouse cursor position moderately predicted eye gaze patterns (Rx = 0.33 and Ry = 0.21).Conclusions:Data detailing mouse cursor movements may be a useful addition to future studies of pathologists’ accuracy and efficiency when using digital pathology.
机译:背景:数字病理学有可能极大地改变病理学家的工作方式,但对于病理学家在解释数字全片图像时的观看行为知之甚少。在查看数字幻灯片时跟踪病理学家的眼动可能是捕获病理学家的观看策略的最直接方法,但这种技术麻烦且在远程设置中使用时存在技术挑战。跟踪病理学家的鼠标光标移动可能是研究数字幻灯片解释的一种实用方法,并且鼠标光标数据可以阐明病理学家在其解释工作流程中的查看策略和时间花费。目的:除了评估鼠标光标移动数据的实用性之外,眼睛跟踪数据,用于研究病理学家的注意力和观看行为。设置和设计:病理学家(N = 7)查看了10张乳腺组织的全数字幻灯片图像,这些图像是使用随机分层抽样技术选择的,包括一系列乳腺病理学诊断(良性/非典型性,原位癌和浸润性乳腺癌)。由三名专家组成的乳腺病理学家组成的小组使用改进的Delphi方法对每个病例​​进行了共识诊断。材料和方法:使用SensoMotoric Instruments RED 60 Hz眼动追踪系统跟踪参与者的中央凹视力。使用自定义的MATLAB脚本跟踪鼠标光标的移动。使用统计分析:以固定的时间间隔收集有关注视和鼠标光标位置的数据,并通过距离比较和通过幻灯片诊断和病理学家的专业知识进行回归分析进行分析。还分析了病理学家的准确性(定义为与专家共识诊断的一致性百分比)和效率(准确性和速度)。结果:每张载玻片的平均观看时间为75.2秒(SD = 38.42)。诊断类型的准确性(与专家共识的百分率)为:83%(良性/非典型性); 48%(原位癌);和93%(侵入性)。视线和鼠标光标位置之间的空间耦合紧密(最高频率Δx为4.00px(SD = 16.10),Δy为37.50px(SD = 28.08))。鼠标光标的位置适中地预测了眼睛的注视模式(Rx = 0.33和Ry = 0.21)。结论:详细描述鼠标光标移动的数据可能是对以后使用数字病理学进行病理学家的准确性和效率研究的有用补充。

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