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Published on: March 27, 2012
Weighted Walking Influences Lower Extremity Coordination in Children on the Autism Spectrum
Jeffrey D Eggleston1, Merrill R Landers2, Barry T Bates3,4
11 Department of Kinesiology, University of Texas at El Paso, TX, USA.
Insights
Carrying loads, like weighted vests or backpacks, may improve gait coordination in children with autism spectrum disorder by reducing movement variability. This suggests potential therapeutic benefits for motor skills.
Area of Science:
- Neuroscience
- Developmental Psychology
- Biomechanics
Background:
- Quantitative research on gait coordination in children with autism spectrum disorder (ASD) is limited.
- Observational studies suggest characteristic movement coordination challenges in this population.
- Understanding how external factors influence gait in children with ASD is crucial for developing interventions.
Purpose of the Study:
- To investigate the effects of carrying loads (weighted vest, backpack) on lower extremity gait coordination in male children with ASD.
- To compare gait coordination patterns under unloaded, weighted backpack, and weighted vest conditions.
- To analyze group and single-subject gait coordination variability.
Main Methods:
- 10 male children (aged 8-17 years) with ASD participated.
- Gait trials were conducted under three conditions: unloaded, 15% body mass backpack, and 15% body mass vest.
- Continuous relative phase analysis quantified lower extremity coordination.
- Statistical analysis included group and single-subject comparisons using the Model Statistic.
Main Results:
- Group comparisons showed no significant changes in gait coordination across conditions, potentially due to limited statistical power.
- Single-subject analyses revealed significantly decreased gait coordination variability in both loaded conditions compared to the unloaded condition (p < .05).
- Participants exhibited more variable coordination patterns during unloaded walking, which became less variable when carrying loads.
Conclusions:
- Carrying or wearing loads may reduce motor pattern choices, leading to decreased lower extremity movement variability in children with ASD.
- This suggests that weighted conditions might normalize or improve gait coordination patterns.
- Further research with larger, diverse samples is needed to confirm these findings and explore therapeutic applications.
Abstract:
There is sparse quantitative research regarding gait coordination patterns of children on the autism spectrum, though previous studies, relying only upon observational data, have alluded to characteristically poor movement coordination. This study compared walking with a weighted vest, a backpack carriage, and an unloaded walking condition on lower extremity coordination among 10 male children (aged 8-17 years) on the autism spectrum. All participants completed 15 gait trials in the following three conditions: (a) unloaded, (b) wearing a backpack weighted with 15% body mass, and (c) wearing a vest weighted with 15% body mass. We used continuous relative phase analysis to quantify lower extremity coordination and analyzed data through both group and single-subject comparisons. We used the Model Statistic to test for statistical significance at each of the normalized data points for each segment couple (thigh-leg, leg-foot, and thigh-foot). The first 10 and last 10 stride blocks were tested for possible accommodation strategies. Group comparisons revealed no coordination changes among the three conditions (likely due to insufficient statistical power), while single-subject comparisons exposed significant decreased variability in gait coordination patterns ( p < .05) in both loaded conditions, relative to the unloaded condition. These participants exhibited variable coordination patterns during the unloaded gait. When walking with loads, coordination pattern variability of the lower extremities was decreased. This finding suggests that walking while carrying or wearing heavy objects may reduce the number of potential motor pattern choices and thus decrease the overall variability of lower extremity movement patterns. Additional research with a larger and more diverse participant sample is required to confirm this conclusion.
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