A new tool for investigating the functional testing of the VOR

Peripheral vestibular function may be tested quantitatively, by measuring the gain of the angular vestibulo-ocular reflex (aVOR), or functionally, by assessing how well the aVOR performs with respect to its goal of stabilizing gaze in space and thus allow to acquire visual information during the hea...

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Main Authors: Paolo eColagiorgio, Silvia eColnaghi, Maurizio eVersino, Stefano eRamat
Format: Article
Language:English
Published: Frontiers Media S.A. 2013-10-01
Series:Frontiers in Neurology
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fneur.2013.00165/full
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spelling doaj-c9c656ded8b8483b96cbb698484276982020-11-24T21:05:52ZengFrontiers Media S.A.Frontiers in Neurology1664-22952013-10-01410.3389/fneur.2013.0016561457A new tool for investigating the functional testing of the VORPaolo eColagiorgio0Silvia eColnaghi1Maurizio eVersino2Stefano eRamat3Stefano eRamat4Università degli Studi di PaviaFondazione Istituto Neurologico Nazionale C. MondinoUniversità degli Studi di PaviaUniversità degli Studi di PaviaFondazione Istituto Neurologico Nazionale C. MondinoPeripheral vestibular function may be tested quantitatively, by measuring the gain of the angular vestibulo-ocular reflex (aVOR), or functionally, by assessing how well the aVOR performs with respect to its goal of stabilizing gaze in space and thus allow to acquire visual information during the head movement. In recent years, several groups have developed clinical and quantitative approaches to functional testing of the vestibular system based on the ability to identify an optotype briefly displayed on screen during head rotations.Although the proposed techniques differ in terms of the parameters controlling the testing paradigm, no study has thus far dealt with understanding the role of such choices in determining the effectiveness and reliability of the testing approach. Moreover, recent work has shown that peripheral vestibular patients may produce corrective saccades during the head movement (covert saccades), yet the role of these eye movements towards reading ability during head rotations is not yet understood. Finally, no study has thus far dealt with measuring the true performance of their experimental setups, which is nonetheless likely to be crucial information for understanding the effectiveness of functional testing approaches. Thus we propose a new software and hardware research tool allowing the combined measurement of eye and head movements, together with the timing of the optotype on screen, during functional testing of the VOR based on the Head Impulse Test (HIT). The goal of such tool is therefore that of allowing functional testing of the VOR while collecting the experimental data necessary to understand, for instance, a) the effectiveness of the covert saccades strategy towards image stabilization, b) which experimental parameters are crucial for optimizing the diagnostic power of the functional testing approach, and c) which conditions lead to a successful reading or an error trial.http://journal.frontiersin.org/Journal/10.3389/fneur.2013.00165/fullDynamic Visual AcuityHead Impulse TestFunctional vestibular testingCompensatory saccadessemicircular canals function
collection DOAJ
language English
format Article
sources DOAJ
author Paolo eColagiorgio
Silvia eColnaghi
Maurizio eVersino
Stefano eRamat
Stefano eRamat
spellingShingle Paolo eColagiorgio
Silvia eColnaghi
Maurizio eVersino
Stefano eRamat
Stefano eRamat
A new tool for investigating the functional testing of the VOR
Frontiers in Neurology
Dynamic Visual Acuity
Head Impulse Test
Functional vestibular testing
Compensatory saccades
semicircular canals function
author_facet Paolo eColagiorgio
Silvia eColnaghi
Maurizio eVersino
Stefano eRamat
Stefano eRamat
author_sort Paolo eColagiorgio
title A new tool for investigating the functional testing of the VOR
title_short A new tool for investigating the functional testing of the VOR
title_full A new tool for investigating the functional testing of the VOR
title_fullStr A new tool for investigating the functional testing of the VOR
title_full_unstemmed A new tool for investigating the functional testing of the VOR
title_sort new tool for investigating the functional testing of the vor
publisher Frontiers Media S.A.
series Frontiers in Neurology
issn 1664-2295
publishDate 2013-10-01
description Peripheral vestibular function may be tested quantitatively, by measuring the gain of the angular vestibulo-ocular reflex (aVOR), or functionally, by assessing how well the aVOR performs with respect to its goal of stabilizing gaze in space and thus allow to acquire visual information during the head movement. In recent years, several groups have developed clinical and quantitative approaches to functional testing of the vestibular system based on the ability to identify an optotype briefly displayed on screen during head rotations.Although the proposed techniques differ in terms of the parameters controlling the testing paradigm, no study has thus far dealt with understanding the role of such choices in determining the effectiveness and reliability of the testing approach. Moreover, recent work has shown that peripheral vestibular patients may produce corrective saccades during the head movement (covert saccades), yet the role of these eye movements towards reading ability during head rotations is not yet understood. Finally, no study has thus far dealt with measuring the true performance of their experimental setups, which is nonetheless likely to be crucial information for understanding the effectiveness of functional testing approaches. Thus we propose a new software and hardware research tool allowing the combined measurement of eye and head movements, together with the timing of the optotype on screen, during functional testing of the VOR based on the Head Impulse Test (HIT). The goal of such tool is therefore that of allowing functional testing of the VOR while collecting the experimental data necessary to understand, for instance, a) the effectiveness of the covert saccades strategy towards image stabilization, b) which experimental parameters are crucial for optimizing the diagnostic power of the functional testing approach, and c) which conditions lead to a successful reading or an error trial.
topic Dynamic Visual Acuity
Head Impulse Test
Functional vestibular testing
Compensatory saccades
semicircular canals function
url http://journal.frontiersin.org/Journal/10.3389/fneur.2013.00165/full
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