Improved Visual Cognition through Stroboscopic Training

Улучшение зрительной когниции с помощью стробоскопической тренировки
Lawrence G. Appelbaum, Stephen R. Mitroff, Matthew S. Cain, Julia E. Schroeder
2011-01-01

central motion sensitivitydual-task paradigmmotion coherence thresholdsmultiple-object trackingstroboscopic eyewearstroboscopic trainingsustained attentiontransient spatial attentionuseful field of viewvisual-motor training
Humans have a remarkable capacity to learn and adapt, but surprisingly little research has demonstrated generalized learning in which new skills and strategies can be used flexibly across a range of tasks and contexts. In the present work we examined whether generalized learning could result from visual-motor training under stroboscopic visual conditions. Individuals were assigned to either an experimental condition that trained with stroboscopic eyewear or to a control condition that underwent identical training with non-stroboscopic eyewear. The training consisted of multiple sessions of athletic activities during which participants performed simple drills such as throwing and catching. To determine if training led to generalized benefits, we used computerized measures to assess perceptual and cognitive abilities on a variety of tasks before and after training. Computer-based assessments included measures of visual sensitivity (central and peripheral motion coherence thresholds), transient spatial attention (a useful field of view - dual task paradigm), and sustained attention (multiple-object tracking). Results revealed that stroboscopic training led to significantly greater re-test improvement in central visual field motion sensitivity and transient attention abilities. No training benefits were observed for peripheral motion sensitivity or peripheral transient attention abilities, nor were benefits seen for sustained attention during multiple-object tracking. These findings suggest that stroboscopic training can effectively improve some, but not all aspects of visual perception and attention.
1
No benefits were observed for peripheral transient attention abilities following stroboscopic training.
2
No training benefits from stroboscopic eyewear were observed for peripheral motion sensitivity.
3
Stroboscopic training did not improve sustained attention as measured by multiple-object tracking.
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Stroboscopic training led to significantly greater retest improvement in transient spatial attention abilities (useful field of view dual-task) compared to control.
5
Stroboscopic visual-motor training produced significantly greater retest improvement in central visual field motion sensitivity compared to control training.

Visual-motor training using stroboscopic eyewear (compared to non-stroboscopic eyewear) during athletic drills

Effects of stroboscopic training on generalized visual perception and attention abilities, specifically central and peripheral motion sensitivity, transient spatial attention, and sustained attention (multiple-object tracking)

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2011-01-01
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Lawrence G. Appelbaum
Stephen R. Mitroff
Matthew S. Cain
Julia E. Schroeder
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