Journal article
Aging effects on event and emergent timing in bimanual coordination
Human Movement Science, Vol.29(5), pp.820-830
2010
Abstract
There is growing evidence that normal aging may produce declines in some motor tasks but not others. One account of the task-specific aging effects suggests that age-related differences will be evident in tasks that demand high-level processing but not in tasks that can be performed relatively automatically. To test this hypothesis we compared the performance of young and older adults on two bimanual circle drawing tasks that utilize either low-level emergent timing processes (continuous circle drawing) or higher-level event-based timing mechanisms (intermittent circle drawing). The circle drawing tasks were performed with the hands coupled in either a symmetrical or asymmetrical coordination mode and at two individually-determined movement frequencies (comfortable and fast). Older participants were able to match the performance of young adults under both coordination modes and movement frequencies in the bimanual continuous circling task, but showed significantly greater temporal variability when performing the intermittent circling task. The results of the study are in accordance with the view that age-related effects will be observed in tasks in which movement timing is guided by high-level representations but not in tasks involving relatively automatic low-level timing processes.
Details
- Title
- Aging effects on event and emergent timing in bimanual coordination
- Authors/Creators
- J.J. Summers (Author/Creator) - University of TasmaniaJ. Lewis (Author/Creator) - University of TasmaniaH. Fujiyama (Author/Creator) - University of Tasmania
- Publication Details
- Human Movement Science, Vol.29(5), pp.820-830
- Publisher
- Elsevier B.V.
- Identifiers
- 991005541765307891
- Copyright
- © 2009 Elsevier B.V.
- Murdoch Affiliation
- Murdoch University
- Language
- English
- Resource Type
- Journal article
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- Citation topics
- 1 Clinical & Life Sciences
- 1.82 Gait & Posture
- 1.82.783 Motor Control
- Web Of Science research areas
- Neurosciences
- Psychology
- Psychology, Experimental
- Sport Sciences
- ESI research areas
- Psychiatry/Psychology