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Updated: Feb 17, 2026

Assessing Corticospinal Excitability During Goal-Directed Reaching Behavior
Published on: December 2, 2022
Corticospinal tract diffusion properties and robotic visually guided reaching in children with hemiparetic cerebral
Andrea M Kuczynski1,2, Sean P Dukelow1,3, Jacquie A Hodge2
1University of Calgary, Calgary, Alberta, Canada.
Insights
Perinatal stroke alters corticospinal tract (CST) diffusion properties, impacting upper extremity motor function in children with hemiparetic cerebral palsy. These changes correlate with specific reaching impairments, highlighting CST
Area of Science:
- Neuroscience
- Pediatric Neurology
- Medical Imaging
Background:
- Perinatal stroke is a primary cause of hemiparetic cerebral palsy (CP), leading to lifelong motor deficits.
- Understanding the relationship between brain structure and motor function is crucial for developing effective interventions.
Purpose of the Study:
- To investigate the association between upper extremity motor impairment measured by robotic assessment and corticospinal tract (CST) diffusion properties in children with perinatal stroke.
- To differentiate diffusion property changes based on stroke type (arterial vs. venous).
Main Methods:
- Diffusion tensor imaging (DTI) was used to quantify CST diffusion metrics (FA, MD, RD, AD) in 33 children with unilateral perinatal ischemic stroke and 26 controls.
- A KINARM robotic system assessed visually guided reaching tasks, measuring parameters like movement time and maximum speed.
- Partial correlations were employed to analyze relationships between robotic performance and CST diffusion properties.
Main Results:
- Children with arterial perinatal stroke showed altered diffusion properties in the lesioned CST compared to controls; the venous group had reduced FA only.
- Both stroke groups exhibited impaired reaching performance.
- Specific reaching parameters, such as movement time, correlated significantly with lesioned CST diffusion properties (e.g., lower FA, higher MD).
Conclusions:
- Diffusion properties of the lesioned CST are significantly altered following perinatal stroke.
- The degree of CST microstructural alteration correlates with specific aspects of visually guided reaching performance in hemiparetic children.
- CST structural connectivity is directly relevant to clinical motor function in this population.
Abstract:
Perinatal stroke is the leading cause of hemiparetic cerebral palsy (CP), resulting in life-long disability. In this study, we examined the relationship between robotic upper extremity motor impairment and corticospinal tract (CST) diffusion properties. Thirty-three children with unilateral perinatal ischemic stroke (17 arterial, 16 venous) and hemiparesis were recruited from a population-based research cohort. Bilateral CSTs were defined using diffusion tensor imaging (DTI) and four diffusion metrics were quantified: fractional anisotropy (FA), mean (MD), radial (RD), and axial (AD) diffusivities. Participants completed a visually guided reaching task using the KINARM robot to define 10 movement parameters including movement time and maximum speed. Twenty-six typically developing children underwent the same evaluations. Partial correlations assessed the relationship between robotic reaching and CST diffusion parameters. All diffusion properties of the lesioned CST differed from controls in the arterial group, whereas only FA was reduced in the venous group. Non-lesioned CST diffusion measures were similar between stroke groups and controls. Both stroke groups demonstrated impaired reaching performance. Multiple reaching parameters of the affected limb correlated with lesioned CST diffusion properties. Lower FA and higher MD were associated with greater movement time. Few correlations were observed between non-lesioned CST diffusion and unaffected limb function though FA was associated with reaction time (R = -0.39, p < .01). Diffusion properties of the lesioned CST are altered after perinatal stroke, the degree of which correlates with specific elements of visually guided reaching performance, suggesting specific relevance of CST structural connectivity to clinical motor function in hemiparetic children.
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