scholarly journals Effort-Based Decision-Making and Gross Motor Performance: Are They Linked?

2020 ◽  
Vol 10 (6) ◽  
pp. 347
Author(s):  
Simone V. Gill ◽  
Samuel J. Abplanalp ◽  
Laura Keegan ◽  
Daniel Fulford

The purpose of this study was to investigate the relationship between effort-based decision making and gross motor performance. Effort-based decision making was measured using a modified version of the Effort Expenditure for Rewards Task (EEfRT), in which participants pressed a button on a keyboard to fill a bar on a screen for monetary reward. Participants received monetary rewards that were commensurate with the level of effort that they were willing to expend. Gross motor performance was measured with a walking task, in which participants matched their steps to the beat of an audio metronome; they walked to metronome beats that were slower and also faster than their normal walking pace. We hypothesized that increased effort during the effort-based decision making task would be paired with an increase in steps taken per minute during the gross motor task. However, the results of this study indicated a lack of a statistically significant relationship between the effort-based decision making task and the gross motor task. Planning rather than decision-making may have been the cognitive construct that governed our gross motor task. These findings can be beneficial when thinking about potential interventions for populations who experience deficits in motor performance and cognition as well as for understanding the relationship between both cognitive and motor performance in healthy adults.

2020 ◽  
Author(s):  
Simone V. Gill ◽  
Samuel J. Abplanalp ◽  
Laura Keegan ◽  
Daniel Fulford

AbstractThe purpose of this study was to investigate the relationship between effort-based decision making and gross motor performance. Effort-based decision making was measured using a modified version of the Effort Expenditure for Rewards Task in which participants pressed a button on a keyboard to fill a bar on a screen for a monetary reward. Gross motor performance was measured with a walking task in which participants matched their steps to the beat of an audio metronome. We hypothesized that increased effort during the effort-based decision making task would be paired with an increase in steps taken per minute during the gross motor task. However, the results of this study indicated no relationship between the effort-based decision making task and the gross motor task. Planning rather than decision-making may have been the cognitive construct that governed our gross motor task. These findings can be beneficial when thinking about potential interventions for populations who experience deficits in motor performance and cognition as well as for understanding the relationship between both cognitive and motor performance in healthy adults.


2006 ◽  
Vol 23 (4) ◽  
pp. 339-355 ◽  
Author(s):  
Miriam Getz ◽  
Yeshayahu Hutzler ◽  
Adri Vermeer

The purpose of this study was to investigate the relationship between motor performance in the aquatic setting as measured by the Aquatic Independence Measure (AIM) to motor performance on land as measured by the Gross Motor Function Measure (GMFM) and the Pediatric Evaluation of Disability Inventory (PEDI). Fourty- nine children with neuro-motor impairments ages 3 to 7 participated in the study. Pearson correlations were applied to determine the relationships between the AIM and the GMFM, PEDI, and Gross Motor Function Classification System (GMFCS). Significant correlations were found between the total AIM and GMFM scores (r = 69, p < .01) and PEDI self-care sub-scale (r = .79, p < .01) as well as the PEDI mobility sub-scale scores (r = .35, p < .05). The water adjustment sub-scale as measured by the AIM showed the strongest relationship to motor performance on land as measured by the GMFM and PEDI in our sample of 49 children.


2009 ◽  
Vol 41 ◽  
pp. 357-358
Author(s):  
Kenneth Krings ◽  
Erin Wilfong ◽  
Mindy Frederick ◽  
Don Hoover

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