A comprehensive suite of 32+ specialized routines covering Oculomotor, Perceptual, Binocularity, and Cognitive processing, designed for clinical precision and accessible anywhere.
We are thrilled to introduce the 3D Multi-Object Tracking (MOT) module to our vision therapy suite! This highly engaging, state-of-the-art exercise uses red/green anaglyph glasses to train patients in tracking multiple moving targets within a simulated 3D field.
Designed to enhance visual processing and cognitive flexibility, this module is perfect for improving sports vision, driving awareness, and overall spatial intelligence.
Therapists and users can deeply customize each session to match their training goals with 14 Unique Drill Types, including:
Precision tools for jump ductions, variable vergence, and digital tranaglyphs.
Vergence dysfunction is one of the most prevalent and most undertreated binocular vision conditions — yet it demands the most precise therapeutic tools. Coarse, uncontrolled vergence stimuli don't build the neural drive needed for lasting change. GoVision's Binocular Vergence module delivers surgical-grade control over the very stimuli that retrain the vergence system.
Trains the vergence system to make rapid, accurate shifts between fixation demands — the real-world skill required when switching gaze between near and far, or between objects at different depth planes. Jump ductions build vergence speed and accuracy simultaneously, targeting the phasic component of the vergence response.
Unlike static targets, variable vergence exercises continuously shift the disparity demand, forcing the vergence system to track and maintain fusion through a range of convergence and divergence demands. This directly builds positive fusional vergence (PFV) and negative fusional vergence (NFV) ranges — the clinical metrics that define binocular vision competency.
The digital evolution of the classic tranaglyph card series. Using Red/Blue dichoptic separation, each eye receives independent vergence targets. The patient must maintain binocular fusion to perceive the complete image, making suppression incompatible with task completion. Unlike physical cards, digital tranaglyphs allow real-time contrast and disparity adjustment mid-session.
A critical parameter unique to digital delivery. Contrast imbalance between the two eyes' inputs is adjusted to account for suppression depth — reducing the dominant eye's contrast to equalize cortical input and coax the suppressing eye into active participation.
The ResultA complete vergence rehabilitation toolkit that builds amplitude, speed, and sustainability — not just symptom relief.
Advanced tracking for saccades, pursuits, and visual flow.
Efficient oculomotor control is foundational to reading fluency, sports performance, and everyday functional vision. When saccades are inaccurate or pursuits are dysrhythmic, the downstream effects show up as reading difficulty, motion sensitivity, and visual fatigue — often misattributed to attention deficits or learning disabilities. GoVision's Oculomotor Dynamics module targets each movement type with precision.
Saccadic training exercises target the accuracy, latency, and sequencing of fast conjugate eye movements. Clinicians control target jump amplitude, direction, and timing to progressively challenge the saccadic system from basic horizontal movements to complex multi-directional sequences — mirroring the demands of reading lines of text or scanning a visual environment.
Smooth pursuit exercises train the eye to track a moving target without losing fixation. Parameters for target speed, trajectory (linear, circular, figure-8), and predictability are all adjustable, allowing clinicians to start within the patient's comfortable tracking range and progressively increase demand. Critical for patients with convergence insufficiency, TBI, or sports vision deficits.
A higher-order oculomotor task requiring the patient to actively suppress a reflexive saccade toward a stimulus and instead move the eyes in the opposite direction. Anti-saccade tasks engage prefrontal inhibitory control alongside oculomotor execution — making this a dual-purpose tool for both eye movement rehabilitation and visual-cognitive training relevant to attention and executive function.
Simulates optic flow — the streaming motion pattern the visual system processes during forward movement. Deficits in visual flow processing are common in vestibular dysfunction, post-concussion syndrome, and motion sensitivity. Training with controlled visual flow patterns helps recalibrate the relationship between visual motion input and postural/vestibular response.
The ResultA comprehensive oculomotor curriculum that addresses every clinically relevant eye movement system — from basic tracking to complex inhibitory control.
Cognitive visual tasks for search, crowding, and global motion.
Vision doesn't end at the retina. The brain's ability to interpret, organize, and respond to visual information is just as clinically relevant as the optics delivering it. GoVision's Perceptual Processing module bridges the gap between eye function and visual cognition — addressing the cortical layer of vision that determines real-world visual performance.
Trains the ability to locate a target within a cluttered visual field — a task that demands coordinated saccadic scanning, sustained attention, and figure-ground discrimination simultaneously. Visual search deficits are common in amblyopia (beyond simple acuity loss), TBI, and developmental visual processing disorders. Clinicians can adjust array density, target similarity, and time pressure to calibrate difficulty.
Crowding — the impaired recognition of a target when surrounded by flanking stimuli — is a hallmark deficit of amblyopia and a major predictor of functional visual performance beyond Snellen acuity. GoVision's crowding tasks allow systematic reduction of flanker spacing to push the limits of spatial resolution and cortical separation, building the perceptual tolerance needed for real-world reading and face recognition.
Random Dot Kinematogram (RDK) tasks measure and train the visual system's ability to detect coherent motion direction from a field of moving dots — a function processed in area MT/V5 of the visual cortex. Global motion sensitivity is often reduced in amblyopia and dyslexia even when local acuity is corrected, making RDK training essential for complete visual rehabilitation beyond the optometric standard of care.
Trains visual processing speed and span by flashing stimuli briefly — from single characters to full words or images — and requiring accurate identification. The tachistoscope directly addresses reading rate, visual memory, and the speed of perceptual recognition. It is particularly valuable in post-concussion rehabilitation and reading fluency programs.
The ResultA cortical-level training suite that treats vision as the brain function it is — building performance where acuity measurements alone can never reach.
Advanced modules for working memory, visual attention, and spatial processing.
To truly rehabilitate the visual system, we must address how the brain handles visual information under cognitive load. Our newly added cognitive processing modules integrate targeted session summaries, data logging in the unified session dashboard, and heat-map generation to map functional capabilities precisely.
Systematically push the functional visual field outward. This module evaluates and trains visual awareness up to 25° of eccentricity. It maps detection accuracy and reaction speeds across all four quadrants while enforcing strict central fixation, providing a clear clinical field note on the patient's functional visual field.
Address temporal attention deficits by measuring the cognitive refractory period. This module features a rapid serial visual presentation (RSVP) paradigm with scalable stream lengths, variable target salience (top-down vs. bottom-up demands), and mindfulness variants to improve working memory gating and visual processing speeds.
A digitized gold-standard clinical paradigm for assessing and expanding visuospatial working memory. Clinicians can adjust sequence lengths, presentation speeds, and spatial patterns to challenge short-term spatial memory and sequential recall.
Train sequence recognition and visual working memory. Patients observe a sequence of targets and must recreate or identify the exact order, helping to build sustained visual attention and structured short-term memory capacity.
The ResultA comprehensive expansion of visual cognition that tracks patient progress into higher-order brain functions, fully integrated with a refined analytics dashboard.
Seamless performance on laptops, tablets, or touchscreens.
The most clinically sophisticated platform in the world is worthless if patients can't reliably access it at home. GoVision Therapy was built from the ground up with one non-negotiable constraint: it must work on the device the patient already owns.
GoVision Therapy runs entirely in the browser — no app downloads, no software installations, no update prompts, no IT barriers. Patients open a link, log in, and begin their session. This eliminates the single most common point of failure in home vision therapy programs: the friction of getting started. For older patients, pediatric patients, and technologically cautious populations, browser-based delivery is not a convenience — it is a compliance strategy.
Every module is fully functional across laptops, desktop monitors, tablets, and touchscreens. The interface adapts to screen size without compromising stimulus integrity — critical when parameters like target size and contrast are therapeutically calibrated. A patient can complete their session on a school tablet in the afternoon and a home laptop in the evening with identical therapeutic output.
The ResultMaximum clinical reach. Every patient you assign, regardless of what device sits on their kitchen table, can complete their therapy tonight.
Experience 32+ clinical modules yourself. Request a personalised demo.