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Compensatory eye movements in the presence of conflicting canal and otolith signals
Authors:A. M. Bronstein  M. A. Gresty
Affiliation:(1) Medical Research Council Human Movement and Balance Unit, Institute of Neurology, National Hospital, Queen Square, WC1N 3BG London, UK
Abstract:Summary Orbital motion of the head with the face directed towards the axis of rotation is a stimulus to the otolith organs which is in the opposite rightwards-leftwards sense to the rotational stimulus to the semicircular canals. This can be experienced, for example, by a child held at arms length ldquoen facerdquo and swung from side to side. As one swings, say to the right, the child's head rotates to its right yet moves linearly to its left. Eye movement responses to a transient orbital movement were observed whilst subjects fixated earth-fixed targets, i) a ldquonear targetrdquo placed between the head and the axis whose relative displacement is in the same direction as head rotation, and ii) a ldquofar targetrdquo placed beyond the axis whose relative motion is in the opposite direction to head rotation. The motion stimuli evoked slow phase eye movements at 45 ms latency, always in the opposite direction to head rotation, thus compensating for the motion of the far target but in the wrong direction for fixating the near target. Theoretically, fixating the near target demands a predominance of the otolith ocularreflex, which would give an eye movement in the correct direction. However, despite visual cues, it seems that if the canal and otolith-ocular reflexes are evoked in opposing directions, the otolith reflex fails to operate at a sensitivity sufficiently high to reverse the direction of the canal-reflex.
Keywords:Vestibulo-ocular reflexes  Eye movements  Head movements  Spatial orientation  Human
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