In this paper we present a novel method for the automatic analysis of mobile eye-tracking data in natural environments. Mobile eye-trackers generate large amounts of data, making manual analysis very time-consuming. Available solutions, such as marker-based analysis minimize the manual labour but require experimental control, making real-life experiments practically unfeasible. We present a novel method for processing this mobile eye-tracking data by applying object, face and person detection algorithms. Furthermore we present a temporal smoothing technique to improve the detection rate and we trained a new detection model for occluded person and face detections. This enables the analysis to be performed on the object level rather than the ...
Mobile eye tracking traditionally requires gaze to be coded manually. We introduce an open-source Py...
This paper presents a system for real-time analysis of 3D gaze data arising in mobile applications. ...
Pfeiffer T, Renner P, Pfeiffer-Leßmann N. EyeSee3D 2.0: Model-based Real-time Analysis of Mobile Eye...
De Beugher S., Brône G., Goedemé T., ''Automatic analysis of in-the-wild mobile eye-tracking experim...
De Beugher S., Tuytelaars T., Goedemé T., ''Automatic analysis of in-the-wild mobile eye-tracking ex...
We discuss a novel method for the analysis of mobile eye- tracking data in natural environments. Mob...
In this paper, we present a novel method for the automatic analysis of mobile eye-tracking data in n...
In this paper we investigate the integration of object detection algorithms with eye-tracking data. ...
In the last four decades eye-tracking research has established itself as a powerful paradigm for stu...
© 2019, Springer Nature Singapore Pte Ltd. Mobile eye-tracking systems have been available for about...
Mobile eye tracking studies in urban environments can provide important insights into several proces...
In this paper we present the outlines of a new project that aims at developing and implementing effe...
De Beugher S., Tuytelaars T., Brône G., Goedemé T., ''Computer vision technique for automatic analys...
For an in-depth, AOI-based analysis of mobile eye tracking data, a preceding gaze assignment step is...
Mobile eye-tracking systems have been available for about a decade now and are becoming increasingly...
Mobile eye tracking traditionally requires gaze to be coded manually. We introduce an open-source Py...
This paper presents a system for real-time analysis of 3D gaze data arising in mobile applications. ...
Pfeiffer T, Renner P, Pfeiffer-Leßmann N. EyeSee3D 2.0: Model-based Real-time Analysis of Mobile Eye...
De Beugher S., Brône G., Goedemé T., ''Automatic analysis of in-the-wild mobile eye-tracking experim...
De Beugher S., Tuytelaars T., Goedemé T., ''Automatic analysis of in-the-wild mobile eye-tracking ex...
We discuss a novel method for the analysis of mobile eye- tracking data in natural environments. Mob...
In this paper, we present a novel method for the automatic analysis of mobile eye-tracking data in n...
In this paper we investigate the integration of object detection algorithms with eye-tracking data. ...
In the last four decades eye-tracking research has established itself as a powerful paradigm for stu...
© 2019, Springer Nature Singapore Pte Ltd. Mobile eye-tracking systems have been available for about...
Mobile eye tracking studies in urban environments can provide important insights into several proces...
In this paper we present the outlines of a new project that aims at developing and implementing effe...
De Beugher S., Tuytelaars T., Brône G., Goedemé T., ''Computer vision technique for automatic analys...
For an in-depth, AOI-based analysis of mobile eye tracking data, a preceding gaze assignment step is...
Mobile eye-tracking systems have been available for about a decade now and are becoming increasingly...
Mobile eye tracking traditionally requires gaze to be coded manually. We introduce an open-source Py...
This paper presents a system for real-time analysis of 3D gaze data arising in mobile applications. ...
Pfeiffer T, Renner P, Pfeiffer-Leßmann N. EyeSee3D 2.0: Model-based Real-time Analysis of Mobile Eye...