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Research Article

Visual processing patterns of adults with traumatic brain injury when viewing image-based grids and visual scenes

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Pages 229-239 | Received 10 Oct 2018, Accepted 12 Apr 2019, Published online: 01 Jul 2019

References

  • Ball, L.J., Lucas, E.J., Miles, J.N., & Gale, A.G. (2003). Inspection times and the selection task: What do eye-movements reveal about relevance effects? The Quarterly Journal of Experimental Psychology Section A, 56, 1053–1077. doi:10.1080/02724980244000729
  • Beukelman, D., & Garrett, K. (1988). Augmentative and alternative communication for adults with acquired severe communication disorders. Augmentative and Alternative Communication, 4, 104–121. doi:10.1080/07434618812331274687
  • Blackstone, S. (2004). Clinical news: Visual scene displays. Augmentative Communication News, 16, 1–8.
  • Brown, J.A., Hux, K., Kenny, C., & Funk, T. (2015a). Consistency and idiosyncrasy of semantic categorization by individuals with traumatic brain injuries. Disability and Rehabilitation: Assistive Technology, 10, 378–384. doi:10.3109/17483107.2014.921250
  • Brown, J., Thiessen, A., Beukelman, D., & Hux, K. (2015b). Noun representation in AAC grid displays: Visual attention patterns of people with traumatic brain injury. Augmentative and Alternative Communication, 31, 15–26. doi:10.3109/07434618.2014.995224
  • Burke, R., Beukelman, D.R., & Hux, K. (2004). Accuracy, efficiency and preferences of survivors of traumatic brain injury when using three organization strategies to retrieve words. Brain Injury, 18, 497–507. doi:10.1080/02699050310001645784
  • Busch, R.M., McBride, A., Curtiss, G., & Vanderploeg, R.D. (2005). The components of executive functioning in traumatic brain injury. Journal of Clinical and Experimental Neuropsychology, 27, 1022–1032. doi:10.1080/13803390490919263
  • Chapman, S.B. (1995). Discourse as an outcome measure in pediatric head-injured populations. In S. H. Broman & M. E. Michel (Eds.), Traumatic head injury in children (pp. 95–116). New York, NY: Oxford University Press.
  • Cook, L.G., Chapman, S.B., Elliott, A.C., Evenson, N.N., & Vinton, K. (2014). Cognitive gains from gist reasoning training in adolescents with chronic-stage traumatic brain injury. Frontiers in Neurology, 5, 1–9. doi:10.3389/fneur.2014.00087
  • Cowan, N. (2010). Multiple concurrent thoughts: The meaning and developmental neuropsychology of working memory. Developmental Neuropsychology, 35, 447–474. doi:10.1080/87565641.2010.494985
  • Davies, D.R., Jones, D.M., & Taylor, A. (1984). Selective and sustained-attention tasks: Individual and group differences. In R. Parasuraman & D. R. Davies (Eds.), Varieties of attention (pp. 395–447). Florida, USA: Academic Press.
  • Drager, K.D.R., Light, J.C., Carlson, R., D'Silva, K., Larsson, B., Pitkin, L., & Stopper, G. (2004). Learning of dynamic display AAC technologies by typically developing 3-year-olds: Effect of different layouts and menu approaches. Journal of Speech, Language, and Hearing Research, 47, 1133–1148. doi:10.1044/1092-4388(2004/084)
  • Duncan, J. (1984). Selective attention and the organization of visual information. Journal of Experimental Psychology: General, 113, 501–517. doi:10.1037/0096-3445.113.4.501
  • Evans, K.K., Horowitz, T.S., Howe, P., Pedersini, R., Reijnen, E., Pinto, Y., … Wolfe, J.M. (2011). Visual attention. WIRES Cognitive Science, 2, 503–514. doi:10.1002/wcs.127
  • Fager, S., Doyle, M., & Karantounis, R. (2007). Traumatic brain injury. In D.R. Beukelman, K.L. Garrett, & K.M. Yorkston (Eds.), Augmentative communication strategies for adults with acute or chronic medical conditions (pp. 131–162). Baltimore, MD: Paul H. Brooks.
  • Fager, S., Hux, K., Karantounis, R., & Beukelman, D. (2006). Augmentative and alternative communication use and acceptance by adults with traumatic brain injury. Augmentative and Alternative Communication, 22, 37–47. doi:10.1080/07434610500243990
  • Folstein, M.F., Folstein, S.E., & McHugh, P.R. (1975). “Mini-mental state”: A practical method for grading the cognitive state of patients for the clinician. Journal of Psychiatric Research, 12, 189–198. doi:10.1016/0022-3956(75)90026-6
  • Fortuny, L.A., Briggs, M., Newcombe, F., Ratcliff, G., & Thomas, C. (1980). Measuring the duration of post traumatic amnesia. Journal of Neurology, Neurosurgery & Psychiatry, 43, 377–379. doi:10.1136/jnnp.43.5.377
  • Fried-Oken, M., Beukelman, D.R., & Hux, K. (2012). Current and future AAC research considerations for adults with acquired cognitive and communication impairments. Assistive Technology, 24, 56–66. doi:10.1080/10400435.2011.648713
  • Fried-Oken, M., & Doyle, M. (1992). Language representation for the augmentative and alternative communication of adults with traumatic brain injury. The Journal of Head Trauma Rehabilitation, 7, 59–69. doi:10.1097/00001199-199209000-00008
  • Gauthier, S., LeBlanc, J., Seresova, A., Laberge-Poirier, A., A Correa, J., Alturki, A.Y., … de Guise, E. (2018). Acute prediction of outcome and cognitive-communication impairments following traumatic brain injury: The influence of age, education and site of lesion. Journal of Communication Disorders, 73, 77–90. doi:10.1016/j.jcomdis.2018.04.003
  • Goldberg, H.J., & Kotval, X.P. (1999). Computer interface evaluation using eye movements: Methods and constructs. International Journal of Industrial Ergonomics, 24, 631–645. doi:10.1016/S0169-8141(98)00068-7
  • Helm-Estabrooks, N. (2001). Cognitive Linguistic Quick Test: CLQT. San Antonio, TX: Psychological Corporation.
  • Hornof, A.J., & Halverson, T. (2002). Cleaning up systematic error in eye-tracking data by using required fixation locations. Behavior Research Methods, Instruments, & Computers, 34, 592–604. doi:10.3758/BF03195487
  • Just, M.A., & Carpenter, P.A. (1976). Eye fixations and cognitive processes. Cognitive Psychology, 8, 441–480. doi:10.1016/0010-0285(76)90015-3
  • Kertesz, A. (2006). Western Aphasia Battery-Revised (WAB-R). San Antonio, TX: Pearson Education.
  • Krpan, K.M., Levine, B., Stuss, D.T., & Dawson, D.R. (2007). Executive function and coping at one-year post traumatic brain injury. Journal of Clinical and Experimental Neuropsychology, 29, 36–46. doi:10.1080/13803390500376816
  • Levin, H.S., Gary, H.E., Eisenberg, H.M., Ruff, R.M., Barth, J.T., Kreutzer, J., … Marshall, L.F. (1990). Neurobehavioral outcome 1 year after severe head injury: Experience. Of the Traumatic Coma Data Bank. Journal of Neurosurgery, 73, 699–709. doi:10.3171/jns.1990.73.5.0699
  • Light, J., Drager, K., McCarthy, J., Mellott, S., Millar, D., Parrish, C., … Welliver, M. (2004). Performance of typically developing four- and five-year-old children with AAC systems using different language organization techniques. Augmentative and Alternative Communication, 20, 63–88. doi:10.1080/07434610410001655553
  • Light, J., & Lindsay, P. (1991). Cognitive sciences and augmentative and alternative communication. Augmentative and Alternative Communication, 7, 186–203. doi:10.1080/07434619112331275893
  • Light, J., & McNaughton, D. (2012). Supporting the communication, language, and literacy development of children with complex communication needs: State of the science and future research priorities. Assistive Technology, 24, 34–44. doi:10.1080/10400435.2011.648717
  • Maas, A.I., Stocchetti, N., & Bullock, R. (2008). Moderate and severe traumatic brain injury in adults. The Lancet Neurology, 7, 728–741. doi:10.1016/S1474-4422(08)70164-9
  • Mangels, J.A., Craik, F.I., Levine, B., Schwartz, M.L., & Stuss, D.T. (2002). Effects of divided attention on episodic memory in chronic traumatic brain injury: A function of severity and strategy. Neuropsychologia, 40, 2369–2385. doi:10.1016/S0028-3932(02)00084-2
  • Manor, B.R., & Gordon, E. (2003). Defining the temporal threshold for ocular fixation in free-viewing visuocognitive tasks. Journal of Neuroscience Methods, 128, 85–93. doi:10.1016/S0165-0270(03)00151-1
  • Mateer, C.A., Kerns, K.A., & Eso, K.L. (1996). Management of attention and memory disorders following traumatic brain injury. Journal of Learning Disabilities, 29, 618–632. doi:10.1177/002221949602900606
  • McKelvey, M.L., Hux, K., Dietz, A., & Beukelman, D.R. (2010). Impact of personal relevance and contextualization on word-picture matching by people with aphasia. American Journal of Speech-Language Pathology, 19, 22–33. doi:10.1044/1058-0360(2009/08-0021)
  • Menon, D.K., Schwab, K., Wright, D.W., & Maas, A.I. (2010). Position statement: Definition of traumatic brain injury. Archives of Physical Medicine and Rehabilitation, 91, 1637–1640. doi:10.1016/j.apmr.2010.05.017
  • Milders, M., Ietswaart, M., Crawford, J.R., & Currie, D. (2008). Social behavior following traumatic brain injury and its association with emotion recognition, understanding of intentions, and cognitive flexibility. Journal of the International Neuropsychological Society, 14, 318–326. doi:10.1017/S1355617708080351
  • Neisser, U. (1967). Cognitive psychology. New York, NY: Appleton-Century-Crofts.
  • Neisser, U., & Becklen, R. (1975). Selective looking: Attending to visually specified events. Cognitive Psychology, 7, 480–494. doi:10.1016/0010-0285(75)90019-5
  • Pallant, J. (2007). SPSS survival manual (3rd. ed.). New York, NY: Open University Press.
  • Pinto, Y., van der Leij, A.R., Sligte, I.G., Lamme, V.A., & Scholte, H.S. (2013). Bottom-up and top-down attention are independent. Journal of Vision, 13, 1–14. doi:10.1167/13.3.16
  • Poole, A., & Ball, L.J. (2006). Eye tracking in HCI and usability research. Encyclopedia of Human Computer Interaction, 211–219. IGI Global. doi:10.4018/978-1-59140-562-7.ch034
  • Rabinowitz, A.R., & Levin, H.S. (2014). Cognitive sequelae of traumatic brain injury. The Psychiatric Clinics of North America, 37, 1–11. doi:10.1016/j.psc.2013.11.004
  • Rayner, K. (2009). Eye movements and attention in reading, scene perception, and visual search. The Quarterly Journal of Experimental Psychology, 62, 1457–1506. doi:10.1080/17470210902816461
  • Robertson, I.H., Manly, T., Andrade, J., Baddeley, B.T., & Yiend, J. (1997). Oops!': Performance correlates of everyday attentional failures in traumatic brain injured and normal subjects. Neuropsychologia, 35, 747–758. doi:10.1016/S0028-3932(97)00015-8
  • Roebuck, J. (1979). When does “old age begin?”: The evolution of the English definition. Journal of Social History, 12, 416–428. doi:10.1353/jsh/12.3.416
  • Salthouse, T.A. (2009). When does age-related cognitive decline begin? Neurobiology of Aging, 30, 507–514. doi:10.1016/j.neurobiolaging.2008.09.023
  • Shane, H.C., & Weiss-Kapp, S. (2008). Visual language in autism. San Diego, CA: Plural Publishing.
  • Snyder, C., & Hux, K. (2000). Traumatic brain injury survivors’ ability to reduce idiosyncrasy in semantic organization. Journal of Medical Speech-Language Pathology, 8, 187–197.
  • Sohlberg, M.M., & Mateer, C.A. (2001). Improving attention and managing attentional problems. Annals of the New York Academy of Sciences, 931, 359–375. doi:10.1111/j.1749-6632.2001.tb05790.x
  • Thiessen, A., Beukelman, D., Hux, K., & Longenecker, M. (2016). A comparison of the visual attention patterns of people with aphasia and adults without neurological conditions for camera-engaged and task-engaged visual scenes. Journal of Speech, Language, and Hearing Research, 59, 290–301. doi:10.1044/2015_JSLHR-L-14-0115
  • Thiessen, A., Beukelman, D., Ullman, C., & Longenecker, M. (2014). Measurement of the visual attention patterns of people with aphasia: A preliminary investigation of two types of human engagement in photographic images. Augmentative and Alternative Communication, 30, 120–129. doi:10.3109/07434618.2014.905798
  • Thiessen, A., Brown, J., Beukelman, D., & Hux, K. (2017a). The effect of human engagement depicted in contextual photographs on the visual attention patterns of adults with traumatic brain injury. Journal of Communication Disorders, 69, 58–71. doi:10.1016/j.jcomdis.2017.07.001
  • Thiessen, A., Brown, J., Beukelman, D., Hux, K., & Myers, A. (2017b). Effect of message type on the visual attention of adults with traumatic brain injury. American Journal of Speech-Language Pathology, 26, 428–442. doi:10.1044/2016_AJSLP-16-0024
  • Thiessen, A., Brown, J., Freeland, T., & Brewer, C.H. (2019). Identification and expression of themes depicted in visual scene and grid displays by adults with traumatic brain injury. American Journal of Speech Language Pathology, 1–12. doi:10.1044/2018_AJSLP-18-0086.
  • Thistle, J.J., & Wilkinson, K.M. (2013). Working memory demands of aided augmentative and alternative communication for individuals with developmental disabilities. Augmentative and Alternative Communication, 29, 235–245. doi:10.3109/07434618.2013.815800
  • Togher, L., Wiseman-Hakes, C., Douglas, J., Stergiou-Kita, M., Ponsford, J., Teasell, R., … Turkstra, L.S. (2014). INCOG recommendations for management of cognition following traumatic brain injury, part IV: Cognitive communication. The Journal of Head Trauma Rehabilitation, 29, 353–368. doi:10.1097/HTR.0000000000000071
  • Tyler, S.W., Hertel, P.T., McCallum, M.C., & Ellis, H.C. (1979). Cognitive effort and memory. Journal of Experimental Psychology: Human Learning and Memory, 5, 607–617. doi:10.1037//0278-7393.5.6.607
  • Vas, A.K., Chapman, S.B., Cook, L.G., Elliott, A.C., & Keebler, M. (2011). Higher-order reasoning training years after traumatic brain injury in adults. The Journal of Head Trauma Rehabilitation, 26, 224–239. doi:10.1097/HTR.0b013e318218dd3d
  • Wallace, S.E. (2010). AAC use by people with TBI: Affects of cognitive impairments. SIG 12 Perspectives on Augmentative and Alternative Communication, 19, 79–86. doi:10.1044/aac19.3.79
  • Wallace, S.E., Hux, K., & Beukelman, D.R. (2010). Navigation of a dynamic screen AAC interface by survivors of severe traumatic brain injury. Augmentative and Alternative Communication, 26, 242–254. doi:10.3109/07434618.2010.521895
  • Whiting, D.L., Deane, F.P., Simpson, G.K., McLeod, H.J., & Ciarrochi, J. (2017). Cognitive and psychological flexibility after a traumatic brain injury and the implications for treatment in acceptance-based therapies: A conceptual review. Neuropsychological Rehabilitation, 27, 263–299. doi:10.1080/09602011.2015.1062115
  • Wilkinson, K.M., & Jagaroo, V. (2004). Contributions of principles of visual cognitive science to AAC system display design. Augmentative and Alternative Communication, 20, 123–136. doi:10.1080/07434610410001699717
  • Wilkinson, K., Light, J., & Drager, K. (2012). Considerations for the composition of visual scene displays: Potential contributions of information from visual and cognitive sciences. Augmentative and Alternative Communication, 28, 137–147. doi:10.3109/07434618.2012.704522
  • Wilkinson, K.M., O’Neill, T., & McIlvane, W.J. (2014). Eye-tracking measures reveal how changes in the design of aided AAC displays influence the efficiency of locating symbols by school-age children without disabilities. Journal of Speech, Language, and Hearing Research, 57, 455–466. doi:10.1044/2013_JSLHR-L-12-0159
  • Yoon, D., & Narayanan, N.H. (2004). Mental imagery in problem solving: An eye tracking study. In Proceedings of the 2004 symposium on Eye tracking research & applications (pp. 77–84). ACM. doi:10.1145/968363.968382
  • Ziino, C., & Ponsford, J. (2006). Selective attention deficits and subjective fatigue following traumatic brain injury. Neuropsychology, 20, 383–390. doi:10.1037/0894-4105.20.3.383

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