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Robotic Quantification of Position Sense in Children With Perinatal Stroke
Andrea M Kuczynski1, Sean P Dukelow2, Jennifer A Semrau2
1University of Calgary, Calgary, Alberta, Canada Alberta Children's Hospital Research Institute, Calgary, Alberta, Canada.
Insights
Robotic assessment accurately measures position sense deficits in children with perinatal stroke, revealing common impairments that worsen with arterial lesions. These sensory issues may be a key target for treating hemiparetic cerebral palsy.
Area of Science:
- Neuroscience
- Rehabilitation Medicine
- Biomedical Engineering
Background:
- Perinatal stroke is a primary cause of hemiparetic cerebral palsy, with motor deficits often prioritized over sensory impairments.
- Accurate clinical measurement of sensory dysfunction in children is challenging.
- Sensory deficits may significantly contribute to overall disability in hemiparetic cerebral palsy.
Purpose of the Study:
- To utilize robotics for precise quantification of position sense deficits in children with perinatal stroke.
- To investigate the relationship between robotic-assessed sensory deficits and established clinical measures of disability and function.
Main Methods:
- A case-control study involving children aged 6-19 with confirmed perinatal stroke and hemiparetic cerebral palsy.
- A robotic exoskeleton (KINARM) was used for a position matching task to measure variability, shift, and area.
- Robotic outcomes were compared between stroke groups and healthy controls, and correlated with clinical assessments like the Assisting Hand Assessment.
Main Results:
- Children with both arterial and venous perinatal stroke showed significantly impaired position sense variability compared to controls, even with vision restored.
- Robotic measures of position sense deficits correlated with functional disability.
- Traditional clinical sensory tests demonstrated modest sensitivity and specificity.
Conclusions:
- Robotic assessment of position sense is a feasible and effective method for evaluating children with perinatal stroke.
- Position sense impairment is prevalent in this population and more severe in arterial stroke cases.
- The limited visual correction suggests underlying cortical sensory network dysfunction, highlighting position sense as a potential therapeutic target for hemiparetic cerebral palsy.
Abstract:
Background Perinatal stroke is the leading cause of hemiparetic cerebral palsy. Motor deficits and their treatment are commonly emphasized in the literature. Sensory dysfunction may be an important contributor to disability, but it is difficult to measure accurately clinically. Objective Use robotics to quantify position sense deficits in hemiparetic children with perinatal stroke and determine their association with common clinical measures. Methods Case-control study. Participants were children aged 6 to 19 years with magnetic resonance imaging-confirmed unilateral perinatal arterial ischemic stroke or periventricular venous infarction and symptomatic hemiparetic cerebral palsy. Participants completed a position matching task using an exoskeleton robotic device (KINARM). Position matching variability, shift, and expansion/contraction area were measured with and without vision. Robotic outcomes were compared across stroke groups and controls and to clinical measures of disability (Assisting Hand Assessment) and sensory function. Results Forty stroke participants (22 arterial, 18 venous, median age 12 years, 43% female) were compared with 60 healthy controls. Position sense variability was impaired in arterial (6.01 ± 1.8 cm) and venous (5.42 ± 1.8 cm) stroke compared to controls (3.54 ± 0.9 cm, P < .001) with vision occluded. Impairment remained when vision was restored. Robotic measures correlated with functional disability. Sensitivity and specificity of clinical sensory tests were modest. Conclusions Robotic assessment of position sense is feasible in children with perinatal stroke. Impairment is common and worse in arterial lesions. Limited correction with vision suggests cortical sensory network dysfunction. Disordered position sense may represent a therapeutic target in hemiparetic cerebral palsy.
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