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March 18, 2026Research in Vestibular Science1 citationsOpen Access

Disentangling vestibulo-ocular reflex cancellation and vestibulo-ocular reflex suppression in vestibular testing: definitions, mechanisms, and clinical applications

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LMLeonardo Manzari

Key Points

  • The aim is to clarify the definitions and mechanisms distinguishing VOR cancellation from VOR suppression in vestibular testing.
  • Reviewed literature to define VOR cancellation and suppression in various paradigms.
  • Linked tasks to eye-in-head versus gaze-in-space measures.
  • Analyzed timing windows associated with reflex and task-dependent modulation.
  • Explored vestibular-nuclear and cerebellar mechanisms to explain patient variability.
  • Defined cancellation as minimizing eye-in-head motion for a head-fixed target.
  • Described suppression as eye velocity adjustment to stabilize gaze on a space-fixed target.
  • Highlighted the impact of peripheral vestibulopathies and central disorders on reflex outcomes.
  • Proposed a checklist and decision algorithm for better clinical interpretation and rehabilitation methods.

Abstract

The terms “vestibulo-ocular reflex (VOR) cancellation” and “VOR suppression” are often used interchangeably in vestibular research and clinical testing, despite probing distinct computations. This review provides operational definitions that separate cancellation from suppression across common paradigms (visually enhanced VOR, VOR suppression, head-impulse paradigm/translational VOR, and suppression head-impulse paradigm/head-fixed target) by linking each task to the appropriate outcome measure (eye-in-head versus gaze-in-space) and to explicit timing windows (early approximately 0–150 msec reflex vs. later task-dependent modulation). Cancellation is framed as the goal to minimize eye-in-head motion when foveating a head-fixed target, whereas suppression reflects visually driven eye velocity (fixation/pursuit) that counteracts vestibular drive to stabilize gaze on a space-fixed target. We integrate vestibular-nuclear and vestibulo cerebellar mechanisms, including the influence of velocity storage, to explain frequency/velocity dependence and dissociations in peripheral vestibulopathies and central (cerebellar/brainstem) disorders. Finally, we propose a pragmatic reporting checklist and a decision algorithm to harmonize interpretation and to guide rehabilitation targets (adaptation, suppression training, substitution, and predictive cueing).

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Cite This Study

Leonardo Manzari (2026) studied this question.

synapsesocial.com/papers/69ba429c4e9516ffd37a315fhttps://doi.org/10.21790/rvs.2026.002
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A non-visual mechanism for voluntary cancellation of the vestibulo-ocular reflex1991 · 68 citations
  2. 2Visual-Vestibular Interaction in Humans During Active and Passive, Vertical Head Movement11993 · 51 citations
  3. 3Firing behavior of brain stem neurons during voluntary cancellation of the horizontal vestibuloocular reflex. I. Secondary vestibular neurons1993 · 148 citations
  4. 4Suppression of the Vestibulo-Ocular Reflex Using Visual and Nonvisual Stimuli2012 · 21 citations
  5. 5Initiation and cancellation of the human heave linear vestibulo-ocular reflex after unilateral vestibular deafferentation2004 · 11 citations