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Published on: July 9, 2016
Clinical Assessment of Visual Motion Perception in Children With Brain Damage: A Comparison With Base Rates and
Ymie J van der Zee1,2, Peter L J Stiers3, Lieven Lagae4
1Royal Dutch Visio, Rotterdam, Netherlands.
Insights
Children with brain damage show higher rates of visual motion perception deficits than expected, even when cognitive delays are considered. These motion perception problems can be isolated or combined, affecting children regardless of their IQ.
Area of Science:
- Neuroscience
- Developmental Psychology
- Visual Perception
Background:
- Children with brain damage often exhibit developmental delays.
- Visual motion perception is crucial for various cognitive functions.
- The specific impact of brain damage on visual motion perception requires further investigation.
Purpose of the Study:
- To determine the prevalence of visual motion perception deficits in children with brain damage.
- To compare these deficits to expected rates in healthy children.
- To assess if these deficits are independent of cognitive developmental delay.
Main Methods:
- Assessed visual motion perception (global motion, speed, form) in 46 children with brain damage.
- Used developmental age to classify performance levels.
- Compared patient scores to expected rates and a healthy control group (n=119).
Main Results:
- 41% of children with brain damage had at least one motion perception deficit, significantly higher than expected (p=0.03).
- Deficits were often isolated (79% of affected patients), but combined deficits also occurred more than expected (8.7% vs 2.1%, p<0.01).
- Patient group deficits exceeded those in the healthy control group.
Conclusions:
- Children with early brain damage have an increased risk of isolated and combined visual motion perception problems.
- These deficits appear to be independent of performance IQ.
- Findings suggest specific visual processing impairments in pediatric brain injury.
Abstract:
Aim: In this study, we examined (1) the presence of abnormally low scores (below 10th percentile) in various visual motion perception aspects in children with brain damage, while controlling for their cognitive developmental delay; (2) whether the risk is increased in comparison with the observation and expectation in a healthy control group and healthy population. Methods: Performance levels of 46 children with indications of brain damage (Mage = 7y4m, SD = 2y4m) on three visual motion perception aspects (global motion, motion speed, motion-defined form) were evaluated. We used developmental age as entry of a preliminary reference table to classify the patient's performance levels. Then we compared the percentages of abnormally low scores with percentages expected in the healthy population using estimated base rates and the observed percentages in the control sample (n = 119). Results: When using developmental age as reference level, the percentage of low scores on at least one of the three tasks was significantly higher than expected in the healthy population [19/46, 41% (95%CI: 28-56%), p = 0.03]. In 15/19 (79% [95%CI: 61-97%] patients only one aspect of motion perception was affected. Four patients performed abnormally low on two out of three tasks, which is also higher than expected (4/46, 8.7%, 95%CI: 2.4-20.8% vs. 2.1%; z = 2.61, p < 0.01). The observed percentages in the patient group were also higher than found in the control group. Interpretation: There is some evidence that children with early brain damage have an increased risk of isolated and combined motion perception problems, independent of their performance IQ.
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