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Published on: April 18, 2011
Spatiotemporal kinematic parameters reflect spasticity level during forward reaching in children with hemiplegic
Fatma Hegazy1,2,3, Ali Hassan4,5, Sarah Mohamed Kamel6,7
1Department of Physiotherapy, College of Health Sciences, University of Sharjah, Sharjah, United Arab Emirates. fhegazy@sharjah.ac.ae.
Insights
Spasticity in children with cerebral palsy significantly impacts upper limb reaching. The normalized jerk score (NJS) is most affected, serving as a key indicator for treatment effectiveness.
Area of Science:
- Pediatric neurology
- Movement science
- Rehabilitation engineering
Background:
- Children with cerebral palsy (CP) exhibit distinct reaching patterns compared to typically developing children.
- Quantifying upper limb motor performance and its correlation with spasticity in CP remains a significant challenge.
Purpose of the Study:
- To investigate the relationship between spasticity levels and spatiotemporal parameters in children with hemiplegic cerebral palsy.
- To identify which spatiotemporal parameter is most influenced by spasticity.
Main Methods:
- Fifty children with hemiplegic CP performed forward reaching tasks.
- An optoelectronic system captured 3D spatiotemporal parameters (movement time, velocity, strategy, smoothness).
- Spearman rank correlation and regression analyses examined the relationship between spasticity and kinematic parameters.
Main Results:
- Spasticity level strongly correlated with normalized jerk score (NJS), number of movement units (NMU), and peak velocity (r=0.7-0.8).
- Regression models were significant (p<.001), with NJS (R²=0.972) and NMU (R²=0.953) showing high variance explained.
- NJS emerged as the parameter most influenced by spasticity.
Conclusions:
- The normalized jerk score (NJS) can serve as a sensitive index for quantifying spasticity's impact on reaching performance in children with CP.
- NJS can be utilized to evaluate the efficacy of therapeutic interventions aimed at motor recovery.
Abstract:
Literature has identified disparities in reaching patterns between children with cerebral palsy and typically developing children. However, determining the spatiotemporal parameters that effectively quantify upper limb motor performance and examining the relationship between these parameters and spasticity level remains a challenge. This study aimed to investigate the relationship between the level of spasticity and the spatiotemporal parameters and detect which parameter is the most influenced by spasticity level. Fifty children with hemiplegic cerebral palsy participated and were asked to reach forward, at a self-selected pace, toward one target at a normalized distance under one level of accuracy. An optoelectronic system captured three-dimensional spatiotemporal parameters quantifying the movement time, velocity, strategy and smoothness of forward reaching. Spearman rank correlation coefficient was used to investigate the strength of the relationship between the level of spasticity and the spatiotemporal parameters (P˂0.05). Regression analysis was used to model the relationship between the studied variables and to investigate the impact of spasticity on the studied kinematic parameters. The level of spasticity was significantly correlated with normalized jerk score (NJS), number of movement units and peak velocity respectively (r = .0.7-0.8). The regression model was statistically significant (p < .001), and explained a significant proportion of the variances of the studied parameters especially NJS (R2 = 0.972) and NMU (R2 = 0.953). NJS is the most influenced parameter by the level of spasticity; therefore, it can be used as an index to quantify the impact of spasticity on reaching performance and to evaluate the effectiveness of treatment strategies on motor recovery.
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