Literature DB >> 24877213

Intersaccadic drift velocity is sensitive to short-term hypobaric hypoxia.

Leandro L Di Stasi, Raúl Cabestrero, Michael B McCamy, Francisco Ríos, Andrés Catena, Pilar Quirós, Jose A Lopez, Carolina Saez, Stephen L Macknik, Susana Martinez-Conde.   

Abstract

Hypoxia, defined as decreased availability of oxygen in the body's tissues, can lead to dyspnea, rapid pulse, syncope, visual dysfunction, mental disturbances such as delirium or euphoria, and even death. It is considered to be one of the most serious hazards during flight. Thus, early and objective detection of the physiological effects of hypoxia is critical to prevent catastrophes in civil and military aviation. The few studies that have addressed the effects of hypoxia on objective oculomotor metrics have had inconsistent results, however. Thus, the question of whether hypoxia modulates eye movement behavior remains open. Here we examined the effects of short-term hypobaric hypoxia on the velocity of saccadic eye movements and intersaccadic drift of Spanish Air Force pilots and flight engineers, compared with a control group that did not experience hypoxia. Saccadic velocity decreased with time-on-duty in both groups, in correlation with subjective fatigue. Intersaccadic drift velocity increased in the hypoxia group only, suggesting that acute hypoxia diminishes eye stability, independently of fatigue. Our results suggest that intersaccadic drift velocity could serve as a biomarker of acute hypoxia. These findings may also contribute to our understanding of the relationship between hypoxia episodes and central nervous system impairments.

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Year:  2014        PMID: 24877213     DOI: 10.1111/ejn.12482

Source DB:  PubMed          Journal:  Eur J Neurosci        ISSN: 0953-816X            Impact factor:   3.386


  7 in total

Review 1.  Unchanging visions: the effects and limitations of ocular stillness.

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2.  Fixational eye movements in Tourette syndrome.

Authors:  Aasef G Shaikh; Shlomit Ritz Finkelstein; Ronald Schuchard; Glen Ross; Jorge L Juncos
Journal:  Neurol Sci       Date:  2017-08-16       Impact factor: 3.307

3.  Effects of driving time on microsaccadic dynamics.

Authors:  Leandro L Di Stasi; Michael B McCamy; Sebastian Pannasch; Rebekka Renner; Andrés Catena; José J Cañas; Boris M Velichkovsky; Susana Martinez-Conde
Journal:  Exp Brain Res       Date:  2014-11-23       Impact factor: 1.972

4.  Eye tracking: empirical foundations for a minimal reporting guideline.

Authors:  Kenneth Holmqvist; Saga Lee Örbom; Ignace T C Hooge; Diederick C Niehorster; Robert G Alexander; Richard Andersson; Jeroen S Benjamins; Pieter Blignaut; Anne-Marie Brouwer; Lewis L Chuang; Kirsten A Dalrymple; Denis Drieghe; Matt J Dunn; Ulrich Ettinger; Susann Fiedler; Tom Foulsham; Jos N van der Geest; Dan Witzner Hansen; Samuel B Hutton; Enkelejda Kasneci; Alan Kingstone; Paul C Knox; Ellen M Kok; Helena Lee; Joy Yeonjoo Lee; Jukka M Leppänen; Stephen Macknik; Päivi Majaranta; Susana Martinez-Conde; Antje Nuthmann; Marcus Nyström; Jacob L Orquin; Jorge Otero-Millan; Soon Young Park; Stanislav Popelka; Frank Proudlock; Frank Renkewitz; Austin Roorda; Michael Schulte-Mecklenbeck; Bonita Sharif; Frederick Shic; Mark Shovman; Mervyn G Thomas; Ward Venrooij; Raimondas Zemblys; Roy S Hessels
Journal:  Behav Res Methods       Date:  2022-04-06

5.  Microsaccades in Applied Environments: Real-World Applications of Fixational Eye Movement Measurements.

Authors:  Robert G Alexander; Stephen L Macknik; Susana Martinez-Conde
Journal:  J Eye Mov Res       Date:  2020-05-15       Impact factor: 0.957

6.  Believing is seeing: fixation duration predicts implicit negative attitudes.

Authors:  Maria Laura Mele; Stefano Federici; John Lawrence Dennis
Journal:  PLoS One       Date:  2014-08-18       Impact factor: 3.240

Review 7.  Microsaccade Characteristics in Neurological and Ophthalmic Disease.

Authors:  Robert G Alexander; Stephen L Macknik; Susana Martinez-Conde
Journal:  Front Neurol       Date:  2018-03-13       Impact factor: 4.003

  7 in total

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