CC..png    

Legal and postal addresses of the publisher: office 1336, 17 Naberezhnaya Severnoy Dviny, Arkhangelsk, 163002, Russian Federation, Northern (Arctic) Federal University named after M.V. Lomonosov

Phone: (818-2) 21-61-21
E-mail: vestnik_med@narfu.ru
https://vestnikmed.ru/en/

ABOUT JOURNAL

Parameters of Oculomotor Activity in Students Perceiving Text Information. Pp. 37–45.

Версия для печати

Section: Physiology

UDC

612.846.1+159.93

Authors

Sokolova Lyudmila Vladimirovna, Institute of Natural Sciences and Technologies, Northern (Arctic) Federal University named after M.V. Lomonosov (Arkhangelsk, Russia) 

Isaeva Olga Nikolaevna, Institute of Natural Sciences and Technologies, Northern (Arctic) Federal University named after M.V. Lomonosov (Arkhangelsk, Russia) 

Roeva Marianna Vladimirovna, Postgraduate Student, Institute of Medical and Biological Research, Northern (Arctic) Federal University named after M.V. Lomonosov (Arkhangelsk, Russia)

Abstract

The paper studied parameters of eye movements in Arkhangelsk university students aged 18 to 25 years (mean age 21.81±3.79 years) when processing text information. The experimental part of the research was based on binocular registration of oculomotor activity in the subjects performing cognitive tests. To record and analyse eye movements we used the high-frequency system of eye tracking iView X ™ RED by the German company SMI (HSSMI). Stimulus material was demonstrated by the special software: SMI Experiment Center and SMI BeGaze 3.0. We assessed the static and dynamic characteristics of eye movements in subjects performing certain cognitive tasks: reading an excerpt from a literary text and searching for a particular letter in a text stimulus. The analysis of oculomotor activity during cognitive task performance using stimuli with different syntactic, semantic and lexical components showed that these characteristics of text stimuli had no effect on the strategy of letter searching, which indicates that motivation and target setting play an important role in task performance. We found that the number of fixations per second is decreasing when semantic and syntactic links in a text stimulus are broken, while saccadic eye movements show high values. The most pronounced changes in the parameters of oculomotor activity were found at letter searching in a text stimulus consisting of a series of unrelated vowels and consonants, thus, it can be considered to be the hardest task, causing strain in the visual sensory system.

Keywords

oculomotor activity, saccade, fixation, text stimuli, morphological and linguistic characteristics.
Download (pdf, 2.9MB )

References

  1. Barabanshchikov V.A. Okulomotornye struktury vospriyatiya [Oculomotor Structures of Perception]. Moscow, 1997. 384 p. 
  2. Barabanshchikov V.A., Zherdev I.Yu. Vospriyatie slozhnykh sotsial’no znachimykh ob”ektov vo vremya bystrykh dvizheniy glaz nablyudatelya [Perception of complex Socially Significant Objects During Observer’s Rapid Eye Movements]. Eksperimental’naya psikhologiya, 2014, vol. 7, no. 2, pp. 5–25. 
  3. Filin V.A. Videoekologiya. Chto dlya glaza khorosho, a chto – plokho [What’s Good and What’s Bad for Eyes]. Moscow, 2006. 312 p. 
  4. Calvo M.G., Meseguer E. Eye Movements and Processing Stages in Reading: Relative Contribution of Visual, Lexical, and Contextual Factors. Span. J. Psychol., 2002, vol. 5, no. 1, pp. 66–77. 
  5. Zvyagina N., Sokolova L., Morozova L., Lukina S., Cherkasova A. Eye Tracking and Autonomic Nervous System Reactivity During Perception of Visual Environments of Different Comfort. ESJ, 2014, vol. 3, pp. 148–156. 
  6. Belopol’skiy V.I. Vzor cheloveka. Mekhanizmy, modeli, funktsii [Human Look. Mechanisms, Models, Functions]. Moscow, 2007. 415 p. 
  7. Gippenreyter Yu.B. Dvizhenie chelovecheskogo glaza [Human Eye Movements]. Moscow, 1978. 263 p. 
  8. Deutschf A., Bentin S. Syntactic and Semantic Factors in Processing Gender Agreement in Hebrew: Evidence from ERPs and Eye Movement. J. Mem. Lang., 2001, vol. 45 (2), pp. 200–224. 
  9. Yarbus A.L. Rol’ dvizheniy glaz v protsesse zreniya [The Role of Eye Movements in Vision]. Moscow, 1965. 176 p. 
  10. Dormashev Yu.B., Romanov V.Ya. Svyaz’ mikrosakkad s funktsional’nymi edinitsami kratkovremennogo zapominaniya [Relation Between Microsaccades and Functional Units of Short-Term Memory]. Vestnik MGU. Ser.: Psikhologiya, 1989, no. 1, pp. 16–29. 
  11. Liversedge S.P., Findlay J.M. Saccadic Eye Movements and Cognition. Trends Cogn. Sci., 2000, vol. 4, no. 1, pp. 6–14. 
  12. Rayner K., Fischer M.H., Pollatsek A. Unspaced Text Interferes with Both Word Identification and Eye Movement Control. Vision Res., 1998, vol. 38, no. 8, pp. 1129–1144. 
  13. Rayner K., Raney G.E., Pollatsek A. Eye Movements and Discourse Processing. Sources of Coherence in Reading. Hillsdale, N.J. 1995, pp. 9–36. 
  14. Binder K.S., Morris R.K. Eye Movements and Lexical Ambiguity Resolution: Effects of Prior Encounter and Discourse Topic. J. Exp. Psychol. Learn. Mem. Cogn., 1995, vol. 21, no. 5, pp. 1186–1196. 
  15. Birch S., Rayner K. Linguistic Focus Affects Eye Movements During Reading. Mem. Gogn., 1997, vol. 25, pp. 653–660. 
  16. O’Regan J.K. Eye Movements and Reading. Eye Movements and Their Role in Visual and Cognitive Processes. Amsterdam, 1990, pp. 395–453. 
  17. Rayner K., Reichle E.D. Models of the Reading Process. Wiley Interdiscip. Rev. Cogn. Sci., 2010, vol. 1, no. 6, pp. 787–799. 
  18. Reichle E.D., Rayner K., Pollatsek A. The E-Z Reader Model of Eye-Movement Control in Reading: Comparisons to Other Models. Behav. Brain Sci., 2003, vol. 26, no. 4, pp. 445–526. 
  19. Sereno S.C. Resolution of Lexical Ambiguity: Evidence from an Eye Movement Priming Paradigm. J. Exp. Psychol. Learn. Mem. Cogn., 1995, vol. 21, no. 3, pp. 582–595.



Make a Submission


INDEXED IN: 

DOAJ_logo-colour.png

Elibrary.ru

logotype.png

infobaseindex

Логотип.png




Лань

OTHER NArFU JOURNALS: 

Vestnik of NArFU.
Series "Humanitarian and Social Sciences"

Forest Journal 
Лесной журнал 

Arctic and North