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Research Articles

Examining Transfer Effects of Dual-Task Training Protocols for a Complex Locomotor Task

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Pages 177-193 | Received 11 May 2016, Accepted 19 Mar 2017, Published online: 23 Jun 2017

REFERENCES

  • Agmon, M., Belza, B., Nguyen, H. Q., Logsdon, R. G., & Kelly, V. E. (2014). A systematic review of interventions conducted in clinical or community settings to improve dual-task postural control in older adults. Journal of Clinical Interventions in Aging, 25, 477–492.
  • Al-Yahya, E., Dawes, H., Collett, J., Howells, K., Izadi, H., Wade, D. T., & Cockburn, J. (2009). Gait adaptations to simultaneous cognitive and mechanical constraints. Experimental Brain Research, 199, 39–48.
  • Basak, C., Boot, W. R., Voss, M. W., & Kramer, A. F. (2008). Can training in a real-time strategy video game attenuate cognitive decline in older adults? Psychology and Aging, 23, 765–777.
  • Beauchet, O., Dubost, V., Herrmann, F. R., & Kressig, R. W. (2005). Stride-to-stride variability while backward counting among healthy young adults. Journal of NeuroEngineering and Rehabilitation, 2, 26–33.
  • Bherer, L., Kramer, A. F., Peterson, M. S., Colcombe, S., Erickson, E., & Becic, E. (2005). Training effects on dual-task performance: Are there age-related differences in plasticity of attentional control? Psychology and Aging, 20, 695–709.
  • Bisoglio, J., Michaels, T. I., Mervis, J. E., & Ashinoff, B. K. (2014). Cognitive enhancement through action video game training: Great expectations require greater evidence. Frontiers in Psychology, 19, 136.
  • Casutt, G., Theill, N., Martin, M., Keller, M., & Jancke, L. (2014). The drive-wise project: Driving simulator training increases real driving performance in healthy older drivers. Frontiers in Aging Neuroscience, 6, 85.
  • Chen, H. C., Schultz, A. B., Ashton-Miller, J. A., Giordani, B., Alexander, N. B., & Guire, K. E. (1996). Stepping over obstacles: Dividing attention impairs performance of old more than young adults. Journal of Gerontology: Biological Sciences, 51A, M116–M122.
  • Chou, L. S., & Draganich, L. F. (1998). Placing the trailing foot closer to an obstacle reduces flexion of the hip, knee and ankle to increase the risk of tripping. Journal of Biomechanics, 31, 685–691.
  • Consiglio, W., Driscoll, P., Witte, M., & Berg, W. P. (2003). Effect of cellular telephone conversations and other potential interference on reaction time in a braking response. Accident Analysis & Prevention, 35, 495–500.
  • Ebersbach, G., Dimitrijevic, M. R., & Poewe, W. (1995). Influence of concurrent tasks on gait: A dual-task approach. Perceptual and Motor Skills, 81, 107–113.
  • Elias, L. J., Bryden, M. P., & Bulma-Fleming, M. B. (1998). Footedness is a better predictor than is handedness of emotional lateralization. Neuropsychologia, 36, 37–43.
  • Gopher, D., Weil, M., & Bereket, Y. (1994). Transfer of skill from a computer game trainer to flight. Human Factors, 36, 387–405.
  • Green, C. S., & Bavelier, D. (2003). Action video game modifies visual selective attention. Nature, 423, 534–537.
  • Heijnen, M. J. H., Muir, B. C., & Rietdyk, S. (2012). Factors leading to obstacle contact during adaptive locomotion. Experimental Brain Research, 223, 219–231.
  • Kahneman, D., & Chajczyk, D. (1983). Tests of the automaticity of reading: Dilution of Stroop effects by color-irrelevant stimuli. Journal of Experimental Psychology: Human Perception and Performance, 9, 497–509.
  • Kelly, V. E., Eusterbrock, A. J., & Shumway-Cook, A. (2013). Factors influencing dynamic prioritization during dual-task walking in healthy young adults. Gait and Posture, 37, 131–134.
  • Kelly, V. E., Janke, A. A., & Shumway-Cook, A. (2010). Effects of instructed focus on concurrent walking and cognitive task performance in healthy young adults. Experimental Brain Research, 207, 65–73.
  • Kramer, A. F., Larish, J. F., & Strayer, D. L. (1995). Training for attentional control in dual task settings: A comparison of young and old adults. Journal of Experimental Psychology: Applied, 1, 50–76.
  • Lajoie, Y., Teasdale, N., Bard, C., & Fleury, M. (1993). Attentional demands for static and dynamic equilibrium. Experimental Brain Research, 97, 139–144.
  • Levy, J., Pashler, H., & Boer, E. (2006). Central interference in driving: Is there any stopping the psychological refractory period? Psychological Science, 17, 228–235.
  • Li, K. Z. H., Roudaia, E. E., Lussier, M. M., Bherer, L. L., Leroux, A. A., & McKinley, P. A. (2010). Benefits of cognitive dual-task training on balance performance in healthy older adults. Journals of Gerontology, Series A: Biological Sciences and Medical Sciences, 65A, 1344–1352. doi:10.1093/gerona/glq151
  • Makizako, H., Furuna, T., Shimada, H., Ihira, H., Kimura, M., Uchiyama, E., & Oddson, L. I. (2010). Association between history of falls and the ability to multi-task in community-dwelling older people. Aging Clinical and Experimental Research, 22, 427–432.
  • Mohagheghi, A. A., Moraes, R., & Patla, A. E. (2004). The effects of distant and on-line visual information on the control of approach phase and step over an obstacle during locomotion. Experimental Brain Research, 155, 459–468.
  • Morgan, A. L. R., & Brandt, J. F. (1989). An auditory Stroop effect for pitch, loudness and time. Brain and Language, 36, 592–603.
  • Naumann, T., Kindermann, S., Joch, M., Munzert, J., & Reiser, M. (2015). No transfer between conditions in balance training regimes relying on tasks with different postural demands: Specificity effects of two serious games. Gait and Posture, 41, 774–779.
  • Pashler, H. (1994). Dual-task interference in simple tasks: Data and theory. Psychological Bulletin, 116, 220–244.
  • Patla, A. E., & Greig, M. (2006). Any way you look at it, successful obstacle negotiation needs visually guided on-line foot placement regulation during the approach phase. Neuroscience Letters, 397, 110–114.
  • Patla, A. E., Prentice, S. D., Robinson, C., & Neufeld, J. (1991). Visual control of locomotion: strategies for changing direction and for going over obstacles. Journal of Experimental Psychology: Human Perception and Performance, 17, 603–634.
  • Pellecchia, G. L. (2005). Dual-task training reduces impact of cognitive task on postural sway. Journal of Motor Behavior, 37, 239–246.
  • Rietdyk, S., McGlothlin, J. D., & Knezovich, M. J. (2005). Work experience mitigated age-related differences in balance and mobility during surface accommodation. Clinical Biomechanics, 201, 1085–1093.
  • Rietdyk, S., & Rhea, C. K. (2011). The effect of visual characteristics of obstacles on risk of tripping and gait parameters during locomotion. Opthalmic & Physiological Optics, 31, 302–310.
  • Rochester, L., Gaina, B., & Lord, S., Burn, D. (2014). The nature of dual-task interference during gait in incident Parkinson's disease. Neuroscience, 265, 83–94.
  • Ruthruff, E., Johnston, J. C., & Van Selst, M. (2001). Why practice reduces dual-task interference. Journal of Experimental Psychology: Human Perception and Performance, 27, 3–21.
  • Schaefer, S., Schellenbach, M., Lindenberger, U., & Woollacott, M. H. (2015). Walking in high-risk settings: Do older adults still prioritize gait when distracted by a cognitive task? Experimental Brain Research, 233, 79–88.
  • Schumacher, E. H., Seymour, T. L., Glass, J. M., Fencsik, D. E., Lauber, E. J., Kieras, D. E., & Meyer, D. E. (2001). Virtually perfect time sharing in dual-task performance: Uncorking the central cognitive bottleneck. Psychological Science, 12, 101–108.
  • Silsupadol, P., Shumway-Cook, A., Lugade, V., van Donkelaar, P., Chou, L., Mayr, U., & Woollacott, M. H. (2009). Effects of single-task versus dual-task training on balance performance in older adults: A double-blind, randomized controlled trial. Archives of Physical Medicine and Rehabilitation, 90, 381–387.
  • Siu, K., Catena, R. D., Chou, L., van Donkelaar, P., & Woollacott, M. H. (2008). Effects of secondary task on obstacle avoidance in healthy young adults. Experimental Brain Research, 184, 115–120.
  • Siu, K., & Woollacott, M. H. (2007). Attentional demands of postural control: The ability to selectively allocate information-processing resources. Gait and Posture, 25, 121–126.
  • Smith-Ray, R. L., Hughes, S. L., Prohaska, T. R., Little, D. M., Jurivich, D. A., & Hedeker, D. (2013). Impact of cognitive training on balance and gait in older adults. Journals of Gerontology, Series B: Psychological Sciences, 70, 357–366. doi:10.1093/geronb/gbt097
  • Strobach, T., Liepelt, R., Pashler, H., Frensch, P. A., & Schubert, T. (2013). Effects of extensive dual-task practice on processing stages in simultaneous choice tasks. Attention, Perception, and Psychophysics, 75, 900–920.
  • Tombu, M., & Jolicoeur, P. (2003). A central capacity sharing model of dual-task performance. Journal of Experimental Psychology: Human Perception and Performance, 29, 3–18.
  • Verghese, J., Mahoney, J., Ambrose, A. F., Wang, C., & Holtzer, R. (2010). Effect of cognitive remediation on gait in sedentary seniors. Journals of Gerontology, Series A: Biological Sciences and Medical Sciences, 65A, 1338–1343.
  • Weerdesteyn, V., Schillings, A. M., van Galen, G. P., & Duysens, J. (2003). Distraction affects the performance of obstacle avoidance during walking. Journal of Motor Behavior, 35, 53–63.
  • Wellmon, R., Barr-Gillespie, A. E., Newton, R., Ruchinskas, R. A., & Stephens, J. (2013). The effects of aging on the attentional demands of walking toward and stepping up onto a curb. Gait and Posture, 38, 198–202.
  • Wollesen, B., & Voelcker-Rehage, C. (2013). Training effects on motor-cognitive dual-task performance in older adults. European Review of Aging and Physical Activity, 11, 5.
  • Woollacott, M. H., & Shumway-Cook, A. (2002). Attention and the control of posture and gait: A review of an emerging area of research. Gait and Posture, 16, 1–14.
  • Worden, T. A., & Vallis, L. A. (2014). Concurrent performance of a cognitive and dynamic obstacle avoidance task: Influence of dual-task training. Journal of Motor Behavior, 46, 357–368.
  • Winter, D. A. (2005). Biomechanics and motor control of human movement (3rd ed.). Hoboken, NJ: Wiley.
  • Yogev-Seligmann, G., Hausdorff, J. M., & Giladi, N. (2008). The role of executive function and attention in gait. Movement Disorders, 23, 329–472.
  • Zeni, J. A., Richards, J. G., & Higginson, J. S. (2008). Two simple methods for determining gait events during treadmill and overground walking using kinematic data. Gait and Posture, 27, 710–714.

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