The eye tracker records eye velocity while the head-motion sensors measure the speed and direction of each impulse. Comparing these two signals shows whether eye movements adequately compensate for head movement. This coordinated measurement provides a quantitative view of vestibulo-ocular reflex performance rather than relying only on a clinician’s visual observation during a bedside examination.
Horizontal and vertical impulses challenge different semicircular canal pathways. Testing both directions allows the examiner to assess vestibular responses across more than one plane of head movement. This broader sampling can help characterize whether an abnormal response is associated with particular canal functions, supporting a more specific description of a patient’s vestibular deficit.
Abnormal compensatory eye movements suggest that the vestibular response is not adequately stabilizing vision during rapid head motion. The system identifies these response abnormalities by relating eye velocity to head velocity. In clinical medicine, that information can support evaluation of peripheral vestibular disorders and help distinguish a measurable vestibular deficit from a normal response pattern.
Brief, unpredictable impulses require the vestibular system to respond to sudden head movements rather than anticipate a known direction or timing. The resulting eye and head motion data reflect performance during rapid gaze stabilization demands. This design helps the examiner evaluate vestibular responses under conditions that resemble the abrupt movements the reflex must normally manage.
The examiner uses the system’s eye-tracking and head-motion sensing components while delivering brief, rapid impulses in horizontal or vertical directions. The system records both movements and compares their velocities to identify the vestibular response. The resulting measurements can then be reviewed alongside the patient’s clinical presentation and bedside examination findings.
Clinicians may use Vhit System A when assessing dizziness or suspected peripheral vestibular disorders. Its measurements provide quantitative information about semicircular canal function and vestibulo-ocular reflex performance. Because the results complement bedside examination, the system can contribute to diagnostic assessment when clinicians need objective characterization of vestibular responses.
The quantitative measurements can help clinicians characterize the extent and pattern of vestibular deficits, then compare findings during later assessments. This makes the system relevant for monitoring recovery as well as evaluating the initial complaint. Results may also guide decisions about whether additional diagnostic assessment is needed within the broader medical evaluation.