BulbiCARE®

Advanced Screening Through Eye Movement with MDR Class IIa Validation

BulbiCARE® uses eye tracking to screen for multiple conditions by measuring eye movements against validated biomarkers, providing objective data that can supplement clinical assessment.

A doctor is looking at results in the BulbiCARE software.

Image shown is for illustrative purposes only. The final product may differ in appearance.

Four disease-focused test batteries

Structured combinations of certified tests designed to evaluate specific conditions and support clinical decision-making

Streamlined workflow

Validated Clinical Tests

11 Tests for Neurological and Ophthalmological Evaluation

Pupil Dynamics


The Pupil Dynamics test is a non-invasive, quantitative assessment tool designed to measure various aspects of pupillary function in patients. This test utilizes specialized imaging technology to evaluate pupillary responses to controlled light stimuli.

  • Objectively measures and quantifies pupil diameters

  • Determines pupil peak velocity during constriction and dilation

  • Detects asymmetries or abnormalities in pupillary responses

RAPD


The RAPD test is a non-invasive, quantitative assessment tool designed to detect differences in pupillary light responses between the two eyes. This test utilizes controlled light stimuli and precise pupillary measurement technology to evaluate asymmetries in the afferent pupillary pathway.

  • Objectively detects and quantifies relative afferent pupil defects

  • Aids in the detection of unilateral or asymmetrical signal transmission losses in the visual pathway

  • Provides clinicians with functional, quantified pupil measurement that can be integrated into their clinical decision-making process in conditions affecting the retina, optic nerve, or visual pathway

Smooth Pursuit


The Smooth Pursuit test is a non-invasive, quantitative assessment tool designed to evaluate the eyes' ability to accurately track a moving visual target. This test utilizes high-precision eye tracking technology to measure various aspects of smooth pursuit eye movements.

  • Evaluates the gain of smooth pursuit eye movements

  • Provides neurologists or other specialists with demonstrated expertise in the diagnosis and management of neurological or neuro-ophthalmological diseases with functional, quantified ocular measurements that can be integrated into their clinical decision-making process in conditions affecting ocular motor control

Horizontal Pro-Saccade


The Horizontal Pro-Saccade test is a non-invasive, quantitative assessment tool designed to evaluate rapid, reflexive eye movements (saccades) in response to visual stimuli. This test utilizes high-precision eye tracking technology to measure various aspects of pro-saccadic eye movements.

  • Objectively measures and quantifies pro-saccade characteristics

  • Assess the accuracy of saccadic eye movements

  • Measures the peak velocity of saccades

  • Provides neurologists or other specialists with demonstrated expertise in the diagnosis and management of neurological or neuro-ophthalmological diseases with functional, quantified ocular measurements that can be integrated into their clinical decision-making process in conditions affecting ocular motor control

Multidirectional Pro-Saccade


The Multidirectional Pro-Saccade test is a non-invasive, quantitative assessment tool designed to evaluate rapid, reflexive eye movements (saccades) in response to visual stimuli. This test utilizes high-precision eye tracking technology to measure various aspects of vertical and horizontal pro-saccadic eye movements.

  • Objectively measures and quantifies pro-saccade characteristics

  • Assess the accuracy of saccadic eye movements

  • Measures the peak velocity of saccades

  • Provides neurologists or other specialists with demonstrated expertise in the diagnosis and management of neurological or neuro-ophthalmological diseases with functional, quantified ocular measurements that can be integrated into their clinical decision-making process in conditions affecting ocular motor control

Visual Field 


The Visual Field Perimetry test, also known as Eye Movement Perimetry, is a non-invasive, quantitative assessment tool designed to evaluate peripheral vision and eye movement responses in patients. The test evaluates 60 peripheral points. This application is to provide clinicians with functional, quantified ocular measurements that can be integrated into their clinical decision-making process in conditions of ocular and neurological diseases affecting the visual field.

  • Objectively measures and quantifies sensitivity in the peripheral visual field

  • Detects and quantifies field loss in the subject's peripheral visual field by identifying seen/unseen targets

  • Measures the subject's saccadic reaction time (latency) to peripheral visual stimuli

  • Aids in the diagnosis to provide clinicians with functional, quantified ocular measurements that can be integrated into their clinical decision-making process of pathologies or other conditions affecting peripheral vision

Pursuit Acuity


The Pursuit Acuity test is a non-invasive, quantitative assessment tool designed to measure central visual acuity in patients. This test utilizes eye movement tracking technology to evaluate a subject's ability to follow high-contrast moving stimuli of decreasing size.

  • Objectively measures and quantifies central visual acuity

  • Detects potential vision loss in the subject's central vision

  • Provides clinicians with functional, quantified ocular measurements that can be integrated into their clinical decision-making process

Pursuit Contrast Sensitivity 


The Pursuit Contrast Sensitivity test is a non-invasive, quantitative assessment tool designed to measure contrast sensitivity in patients. This test utilizes eye movement tracking technology to evaluate a subject's ability to detect and follow moving stimuli of varying contrast levels.

  • Objectively measures and quantifies contrast sensitivity

  • Detects potential impairments in contrast perception

  • Provides clinicians with functional, quantified ocular measurements that can be integrated into their clinical decision-making process

Strobe Contrast Sensitivity


The Strobe Contrast Sensitivity test is a non-invasive, quantitative assessment tool designed to measure the latency in adapting to various light conditions in foveal photoresistors and their accompanying retinal neurons in patients. This test utilizes eye movement tracking technology in combination with controlled light stimuli to evaluate a subject's ability to maintain visual tracking under varying light conditions. This test determines the threshold frequency where a fixed-contrast stimulus becomes undetectable.

  • Objectively measures and quantifies foveal light adaptation latency

  • Detects potential impairments in foveal light adaptation latency

  • Provides clinicians with functional, quantified ocular measurements that can be integrated into their clinical decision-making process in conditions affecting the retina, optic nerve, or visual pathway

Variable Strobe 


The Variable Strobe test is a non-invasive, quantitative assessment tool designed to measure the latency in adapting to various light conditions in foveal photoreceptors and their accompanying retinal neurons in patients. This test utilizes eye movement tracking technology in combination with controlled light stimuli to evaluate a subject's ability to maintain visual tracking under varying light conditions.

  • Objectively measures and quantifies foveal light adaptation latency

  • Detects potential impairments in foveal light adaptation latency

  • Provides clinicians with functional, quantified ocular measurements that can be integrated into their clinical decision-making process in conditions affecting the retina, optic nerve, or visual pathway

Ptosis


The Ptosis test (MRD1 and MRD2) measurements are intended to be used by healthcare professionals as an objective, quantitative assessment of eyelid position and function. These measurements should be interpreted in the context of the patient's full clinical presentation, medical history, and other relevant diagnostic findings.

  • Provides automated objective measurements of eyelid position using MRD1 and MRD2

  • Quantifies the position of the upper and lower eyelids relative to the pupil

  • Assess and documents the eyelid asymmetry and changes over time