Difference between revisions of "Eyetracker"
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=== EyeLink 1000 === | === EyeLink 1000 === | ||
[[image:Eyelink1000.jpg | right |150px]] | [[image:Eyelink1000.jpg | right |150px]] | ||
| − | + | *[https://www.sr-research.com/eyelink-1000-plus/ EyeLink 1000 (Plus) product page] | |
The core of the EyeLink 1000 eye tracker consists of a custom designed high-speed camera connected to a dedicated Host computer. Running on a real-time operating system, the Host software provides extremely fast eye sample access with incredibly low inter-sample variability, accessed via a set of programming interfaces for multiple operating systems and programming languages | The core of the EyeLink 1000 eye tracker consists of a custom designed high-speed camera connected to a dedicated Host computer. Running on a real-time operating system, the Host software provides extremely fast eye sample access with incredibly low inter-sample variability, accessed via a set of programming interfaces for multiple operating systems and programming languages | ||
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|- | |- | ||
! Eyelink 1000 and Eyelink 1000 Plus | ! Eyelink 1000 and Eyelink 1000 Plus | ||
| + | ! | ||
|- | |- | ||
| Sampling Rate || Head Supported: 2000 Hz Monocular / 1000 Hz Binocular | | Sampling Rate || Head Supported: 2000 Hz Monocular / 1000 Hz Binocular | ||
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Remote / Head Free:0.05º RMS, saccade resolution of 0.25 | Remote / Head Free:0.05º RMS, saccade resolution of 0.25 | ||
|} | |} | ||
| − | + | *[https://www.sr-research.com/eyelink-1000-plus-technical-specifications/ EyeLink 1000 (Plus) Technical Specifications] <br /> | |
| − | + | *[[Eyelink_1000_calibration | Matlab calibration example]] | |
| − | [[Eyelink_1000_calibration | Matlab calibration example]] | + | *[[Eyelink1000plussetup|Eyelink 1000 plus setup]] |
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| − | [[Eyelink1000plussetup|Eyelink 1000 plus setup]] | ||
Here is a '''tutorial video''' on how to '''setup Eyelink with a participant''': [https://www.youtube.com/watch?v=O3z8I5y_l5E&list=PLOdF-B36TwspxRQeam0u5Yd29wOjUWcel&index=7 Eyelink setup and calibration tutorial video.] | Here is a '''tutorial video''' on how to '''setup Eyelink with a participant''': [https://www.youtube.com/watch?v=O3z8I5y_l5E&list=PLOdF-B36TwspxRQeam0u5Yd29wOjUWcel&index=7 Eyelink setup and calibration tutorial video.] | ||
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{| class="wikitable" | {| class="wikitable" | ||
|- | |- | ||
| − | |[[File:EyelinkParticipantSetup.jpg|frame|FAQ: What is the ideal configuration EyeLink 1000 / EyeLink 1000 Plus Desktop mount? | + | |[[File:EyelinkParticipantSetup.jpg|frame|FAQ: What is the ideal configuration EyeLink 1000 / EyeLink 1000 Plus Desktop mount?<ref>Taken from the [https://www.sr-research.com/support/thread-206.html?highlight=What+is+the+ideal+configuration+EyeLink+1000+%2F+EyeLink+1000+Plus+Desktop+mount sr-support forum] (sign-in required)</ref>]] |
|} | |} | ||
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'''Downloads''' | '''Downloads''' | ||
| − | * | + | *{{Download link|media=Tobii TX 300.pdf|How to use a Tobii TX 300 eyetracker|pdf}} |
| − | * | + | *{{Download link|media=Getting_a_Tobii_Eye_Tracker_to_Work.pdf|Getting Started Guide|pdf}} |
| − | * | + | *{{Download link|media=TobiiEyetrackerExtension_1_1.zip|Tobii Eyetrackers Extension for use with Presentation (including samples and documentation)|zip}} |
*[https://www.fh-joanneum.at/en/projekt/visionspace-wahrnehmungslabor/ Neurobs Presentation plugin & documentation] | *[https://www.fh-joanneum.at/en/projekt/visionspace-wahrnehmungslabor/ Neurobs Presentation plugin & documentation] | ||
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| Audio || Built-in Speakers (3W) | | Audio || Built-in Speakers (3W) | ||
|} | |} | ||
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== SensoMotoric Instruments (SMI) == | == SensoMotoric Instruments (SMI) == | ||
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[[SMI RED 500 Eye Tracker (DCC)|How to connect SMI RED 500 eyetracker (Scheme)]] | [[SMI RED 500 Eye Tracker (DCC)|How to connect SMI RED 500 eyetracker (Scheme)]] | ||
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=== iView X === | === iView X === | ||
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'''Downloads''' | '''Downloads''' | ||
| − | * | + | *{{Download link|media=IViewX.pdf|iView X Manual|pdf}} |
| − | * | + | *{{Download link|media=Eye-tracking_Presentation_iview.zip|Presentation Extension|zip}} |
| − | * | + | *{{Download link|media=SMI-Eyetracker-Example.zip|Example Presentation Script|zip}} - An example script (new since 2018-06-05) that connects and communicates with the IViewX program. It shows two pictures side by side. Data can be analysed using BeGaze. There are a lot of explanations in the files. The comments will help understanding how to use an SMI eyetracker in Presentation. |
| − | Source code: | + | Source code: |
| + | *{{Gitlab|h.voogd/SMI-Eyetracking-Example/blob/master/SMI-Eyetracker-Example.sce|SMI-Eyetracker-Example.sce}} | ||
| + | *{{Gitlab|h.voogd/SMI-Eyetracking-Example/blob/master/SMI-Eyetracker-ExampleINFO.pcl|SMI-Eyetracker-ExampleINFO.pcl}} | ||
| + | *{{Gitlab|h.voogd/SMI-Eyetracking-Example/blob/master/SMI-Eyetracker-ExamplePCL.pcl|SMI-Eyetracker-ExamplePCL.pcl}} | ||
| + | *{{Gitlab|h.voogd/SMI-Eyetracking-Example/blob/master/SMI-Eyetracker-ExampleSUBS.pcl|SMI-Eyetracker-ExampleSUBS.pcl}} | ||
| + | *{{Download link|media=Python.zip|Python Script|zip}} | ||
| − | + | ==References== | |
| + | <references/> | ||
Latest revision as of 17:44, 11 August 2026
SR Research
EyeLink II
The EyeLink II system consists of three miniature cameras mounted on a padded headband. Two eye cameras allow binocular eye tracking or selection of the subject’s dominant eye.
An optical head-tracking camera integrated into the headband allows accurate tracking of the subject’s point of gaze without the need for a bite bar.
Specifications
| EyeLink II |
|---|
| 500 Hz binocular eye monitoring |
| 0.5º average accuracy |
| Access eye position data with 3.0 msec delay |
| 0.01º RMS resolution |
| High quality computer based or scene camera eye tracking |
| Fast and simple participant setup, calibration, and validation |
EyeLink 1000
The core of the EyeLink 1000 eye tracker consists of a custom designed high-speed camera connected to a dedicated Host computer. Running on a real-time operating system, the Host software provides extremely fast eye sample access with incredibly low inter-sample variability, accessed via a set of programming interfaces for multiple operating systems and programming languages
Specifications
| Eyelink 1000 and Eyelink 1000 Plus | |
|---|---|
| Sampling Rate | Head Supported: 2000 Hz Monocular / 1000 Hz Binocular
Remote / Head Free: 500 Hz Monocular |
| Accuracy | Head Supported: 0.25º -0.5º average accuracy
Remote / Head Free: 0.5º average accuracy |
| Real-time Data Access | Head Supported: 1.4 msec (SD < 0.4 msec) @ 2000 Hz
Remote / Head Free: 3 msec (SD < 1.2 msec) @ 500 Hz |
| Participant Setup | Very simple and easy. Typically less than 2-5 minutes |
| Resolution | Head Supported: 0.01º RMS, micro-saccade resolution of 0.05º
Remote / Head Free:0.05º RMS, saccade resolution of 0.25 |
Here is a tutorial video on how to setup Eyelink with a participant: Eyelink setup and calibration tutorial video.
From the SR-Research support forum, about placement of monitor, camera and participant:
Ideally, the Desktop mount should be placed between 50-70 cm from the participant's eyes and be centrally aligned with the Display monitor from the participant's perspective. When using a wide screen monitor it will need to be sufficiently far away from the participant that it fits within the trackable range of the system. As a rule of thumb it will need to be at a distance at least 1.75 times its width (so a 40 cm wide monitor would need to be at least 70 cm away). As widescreen monitors are typically around 50 cm wide, they will need to be placed at least 90 cm away. This means that, in order for the camera to be placed correctly (50-70 cm from the participant's eyes) it will need to be brought forward from the monitor 20-30 cm.
The top of the EyeLink camera and illuminator should also be as high as possible in the participant's field of view without obstructing any part of the display.
FAQ: What is the ideal configuration EyeLink 1000 / EyeLink 1000 Plus Desktop mount?[1] |
Tobii
Tobii T60/T120
The Tobii T60 and T120 Eye Trackers are integrated into a 17" TFT monitor. They are ideal for all forms of eye tracking studies using screen based stimuli.
There is a Tobii setup in the babylab, which is in a fixed lab setup.
There are also two mobile Tobii setups. Please contact Gero Lange for booking requests. Please keep in mind that these mobile setups are booked _without_ a room. If you plan to use these eyetrackers, make sure to also book a room that can be locked. You can use it in a cubicle, as long as you make sure that the eyetracker is stored in a locked room at the end of the day.
Specifications
| Tobii T60 Eye Tracker | Tobii T120 Eye Tracker1 | |
|---|---|---|
| Accuracy (degrees) | 0.5 | 0.5 |
| Drift (degrees) | < 0.3 | < 0.3 |
| Freedom of Head Movement (cm) | 44 * 22 * 30 | 30 * 22 * 30 |
| Data Rate (Hz) | 60 | 120 |
| Binocular Tracking | Yes | Yes |
| Display Size (inch) | 17 | 17 |
| Display Resolution (px) | 1280 * 1024 | 1280 * 1024 |
| Bright/Dark Pupil Tracking | Both - automatic optimization | Both - automatic optimization |
| Eye Tracking Server | Embedded | Embedded |
| User Camera | Built-in | Built-in |
| Audio | Built-in Speakers | Built-in Speakers |
1The Tobii T120 Eye Tracker can also run in T60 mode with full head movement box
Presentation plugin, including documentation on how to install and how to use it:
https://www.fh-joanneum.at/en/projekt/visionspace-wahrnehmungslabor/
Downloads
- ⬇️Getting Started Guide (pdf)
Lab setup
Tobii TX300
Specifications
| Tobii TX300 Eye Tracker1 | |
|---|---|
| Precision(degrees) | < 0.1 |
| Accuracy (degrees) | 0.5 (Monocular), 0.4 (Binocular) |
| Freedom of Head Movement (cm) | 37 * 17 (at 65 cm distance) |
| Data Rate (Hz) | 60Hz, 120Hz or 300Hz |
| Binocular Tracking | Yes |
| Display Size (inch) | 23 |
| Display Resolution (px) | 1920 * 1080 (max 60Hz) |
| Tracking method | Dark Pupil Tracking |
| Eye Tracking Server | Embedded |
| User Camera | Built-in (640x480@30fps) |
| Audio | Built-in Speakers (3W) |
SensoMotoric Instruments (SMI)
SMI RED500
How to connect SMI RED 500 eyetracker (Scheme)
iView X
Downloads
- ⬇️iView X Manual (pdf)
- ⬇️Presentation Extension (zip)
- ⬇️Example Presentation Script (zip) - An example script (new since 2018-06-05) that connects and communicates with the IViewX program. It shows two pictures side by side. Data can be analysed using BeGaze. There are a lot of explanations in the files. The comments will help understanding how to use an SMI eyetracker in Presentation.
Source code:
SMI-Eyetracker-Example.sce
SMI-Eyetracker-ExampleINFO.pcl
SMI-Eyetracker-ExamplePCL.pcl
SMI-Eyetracker-ExampleSUBS.pcl- ⬇️Python Script (zip)
References
- ↑ Taken from the sr-support forum (sign-in required)



