Literature DB >> 26587699

Knowing what the brain is seeing in three dimensions: A novel, noninvasive, sensitive, accurate, and low-noise technique for measuring ocular torsion.

Jorge Otero-Millan, Dale C Roberts, Adrian Lasker, David S Zee, Amir Kheradmand.   

Abstract

Torsional eye movements are rotations of the eye around the line of sight. Measuring torsion is essential to understanding how the brain controls eye position and how it creates a veridical perception of object orientation in three dimensions. Torsion is also important for diagnosis of many vestibular, neurological, and ophthalmological disorders. Currently, there are multiple devices and methods that produce reliable measurements of horizontal and vertical eye movements. Measuring torsion, however, noninvasively and reliably has been a longstanding challenge, with previous methods lacking real-time capabilities or suffering from intrusive artifacts. We propose a novel method for measuring eye movements in three dimensions using modern computer vision software (OpenCV) and concepts of iris recognition. To measure torsion, we use template matching of the entire iris and automatically account for occlusion of the iris and pupil by the eyelids. The current setup operates binocularly at 100 Hz with noise <0.1° and is accurate within 20° of gaze to the left, to the right, and up and 10° of gaze down. This new method can be widely applicable and fill a gap in many scientific and clinical disciplines.

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Year:  2015        PMID: 26587699      PMCID: PMC4633118          DOI: 10.1167/15.14.11

Source DB:  PubMed          Journal:  J Vis        ISSN: 1534-7362            Impact factor:   2.240


  50 in total

1.  Influence of orientation of exiting wire of search coil annulus on torsion after saccades.

Authors:  Oliver Bergamin; Stefano Ramat; Dominik Straumann; David S Zee
Journal:  Invest Ophthalmol Vis Sci       Date:  2004-01       Impact factor: 4.799

Review 2.  Listing's law: clinical significance and implications for neural control.

Authors:  Agnes M F Wong
Journal:  Surv Ophthalmol       Date:  2004 Nov-Dec       Impact factor: 6.048

3.  VTM--an image-processing system for measuring ocular torsion.

Authors:  S T Moore; I S Curthoys; S G McCoy
Journal:  Comput Methods Programs Biomed       Date:  1991-07       Impact factor: 5.428

4.  Human otolith-ocular reflexes during off-vertical axis rotation: effect of frequency on tilt-translation ambiguity and motion sickness.

Authors:  Scott J Wood
Journal:  Neurosci Lett       Date:  2002-04-19       Impact factor: 3.046

5.  A theoretical analysis of three-dimensional eye position measurement using polar cross-correlation.

Authors:  T Haslwanter; S T Moore
Journal:  IEEE Trans Biomed Eng       Date:  1995-11       Impact factor: 4.538

6.  Torsional vestibulo-ocular reflex during whole-body oscillation in the upright and the supine position. I. Responses in healthy human subjects.

Authors:  A Schmid-Priscoveanu; D Straumann; A A Kori
Journal:  Exp Brain Res       Date:  2000-09       Impact factor: 1.972

7.  Human ocular counterroll: assessment of static and dynamic properties from electromagnetic scleral coil recordings.

Authors:  H Collewijn; J Van der Steen; L Ferman; T C Jansen
Journal:  Exp Brain Res       Date:  1985       Impact factor: 1.972

8.  Human ocular torsional position before and after unilateral vestibular neurectomy.

Authors:  I S Curthoys; M J Dai; G M Halmagyi
Journal:  Exp Brain Res       Date:  1991       Impact factor: 1.972

9.  Ocular counter-rolling during active head tilting in humans.

Authors:  T Viéville; D Masse
Journal:  Acta Otolaryngol       Date:  1987 Mar-Apr       Impact factor: 1.494

10.  VASIR: An Open-Source Research Platform for Advanced Iris Recognition Technologies.

Authors:  Yooyoung Lee; Ross J Micheals; James J Filliben; P Jonathon Phillips
Journal:  J Res Natl Inst Stand Technol       Date:  2013-04-23
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  15 in total

1.  The video ocular counter-roll (vOCR): a clinical test to detect loss of otolith-ocular function.

Authors:  Jorge Otero-Millan; Carolina Treviño; Ariel Winnick; David S Zee; John P Carey; Amir Kheradmand
Journal:  Acta Otolaryngol       Date:  2017-01-13       Impact factor: 1.494

Review 2.  Consensus Paper: Neurophysiological Assessments of Ataxias in Daily Practice.

Authors:  W Ilg; M Branscheidt; A Butala; P Celnik; L de Paola; F B Horak; L Schöls; H A G Teive; A P Vogel; D S Zee; D Timmann
Journal:  Cerebellum       Date:  2018-10       Impact factor: 3.847

3.  Design, simulation and evaluation of uniform magnetic field systems for head-free eye movement recordings with scleral search coils.

Authors:  Karin Eibenberger; Bernhard Eibenberger; Michele Rucci
Journal:  Annu Int Conf IEEE Eng Med Biol Soc       Date:  2016-08

4.  Ocular Kinematics Measured by In Vitro Stimulation of the Cranial Nerves in the Turtle.

Authors:  Maria Cano Garcia; Steven C Nesbit; Chi C Le; James R Dearworth
Journal:  J Vis Exp       Date:  2018-06-02       Impact factor: 1.355

5.  Three-dimensional eye movement recordings during magnetic vestibular stimulation.

Authors:  Jorge Otero-Millan; David S Zee; Michael C Schubert; Dale C Roberts; Bryan K Ward
Journal:  J Neurol       Date:  2017-03-07       Impact factor: 4.849

6.  Development of a conversion model between mechanical and electrical vestibular stimuli.

Authors:  A Chen; N Khosravi-Hashemi; C Kuo; J K Kramer; J-S Blouin
Journal:  J Neurophysiol       Date:  2019-12-18       Impact factor: 2.714

7.  Retinal optic flow during natural locomotion.

Authors:  Jonathan Samir Matthis; Karl S Muller; Kathryn L Bonnen; Mary M Hayhoe
Journal:  PLoS Comput Biol       Date:  2022-02-22       Impact factor: 4.475

8.  Continuous vestibular implant stimulation partially restores eye-stabilizing reflexes.

Authors:  Peter J Boutros; Desi P Schoo; Mehdi Rahman; Nicolas S Valentin; Margaret R Chow; Andrianna I Ayiotis; Brian J Morris; Andreas Hofner; Aitor Morillo Rascon; Andreas Marx; Ross Deas; Gene Y Fridman; Natan S Davidovics; Bryan K Ward; Carolina Treviño; Stephen P Bowditch; Dale C Roberts; Kelly E Lane; Yoav Gimmon; Michael C Schubert; John P Carey; Andreas Jaeger; Charles C Della Santina
Journal:  JCI Insight       Date:  2019-11-14

9.  Upright Perception and Ocular Torsion Change Independently during Head Tilt.

Authors:  Jorge Otero-Millan; Amir Kheradmand
Journal:  Front Hum Neurosci       Date:  2016-11-17       Impact factor: 3.169

10.  Exploring the Role of Temporoparietal Cortex in Upright Perception and the Link With Torsional Eye Position.

Authors:  Jorge Otero-Millan; Ariel Winnick; Amir Kheradmand
Journal:  Front Neurol       Date:  2018-04-06       Impact factor: 4.003

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