Eye Tracking System

An eye tracking system is a measurement technology that records where, when, and how a person’s eyes move, providing an indirect window into visual attention and cognitive behavior. In many systems, infrared cameras illuminate the eye and detect the pupil center and corneal reflection, allowing software to calculate gaze position, fixations, saccades, and pupil changes over time. In biology, eye tracking helps researchers study visual processing, perception, learning, decision-making, and responses to natural or experimental stimuli. The resulting data can reveal how organisms sample information and support research in neuroscience, psychology, human-computer interaction, and clinical assessment.

Eye Tracking System - Related Videos

Education

JoVE Science Education - Psychology

Eye Tracking in Cognitive Experiments

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2023

Eye tracking as the name suggests involves tracking of eye-movements. It is a non-invasive, sensitive tool that quantifies and measures eye-movements to describe an individuals' cognitive state. An eye-movement between two fixation points is called a saccade, which is one of the fastest motor movements in our body. By observing the profiles of these eye movements, scientists can better understand neural deficits in patients with cognitive impairments. In this video, we will first look at an...

Research

JoVE Journal - Medicine
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Eye Tracking Young Children with Autism

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Cited by 93 •

2012

Eye tracking has long been used to study gaze patterns in typically-developing individuals, but recent technological advancements have made its use with clinical populations, including autism, more feasible. While eye-tracking young children with autism can offer insight into early symptom manifestations, it involves methodological challenges. Suggestions for best practices are provided.

Research

JoVE Journal - Behavior
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A Method to Quantify Visual Information Processing in Children Using Eye Tracking

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Cited by 41 •

2016

A method is described to quantify the quality of visual information processing based on reflexive eye movements in response to specific visual modalities. Reaction times and fixation output parameters are used to characterize visual performance in children with and without visual impairments from 6 months of age.

Using Eye-tracking to Assess the Relative Importance of Visual and Vestibular Input to Subcortical Motion Processing in the Roll Plane

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2025

The methodology explored visual and vestibular contributions to gaze stabilization during optokinetic and whole-body rotations. Stimulations were carried out through visual, vestibular, and visuovestibular trials. Torsional eye-movement gain and nystagmus frequencies served as indicators for the subcortical relay of sensory-specific motion information towards the reflexive brainstem response for each trial.

Simultaneous Eye Tracking and Single-Neuron Recording to Identify Target-Selective Neurons

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2025

The video demonstrates an assay to identify target-selective neurons via simultaneous eye-tracking and single-neuron recordings. A human participant is tasked with identifying a target object among an array of objects in a display, and the eye movement is tracked. Simultaneously, single neurons' firing rate is recorded via electrodes implanted in the brain. The data from both recordings are correlated to assess the presence of target-selective neurons.

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