Purpose: Children with cerebral palsy (CP) who function at Gross Motor Function Classification System (GMFCS) Level IV have difficulty achieving sufficient levels of physical activity to promote fitness. The purpose of this pilot evaluation was to investigate the practicability and impact of a school-based supported physical activity programme, using adaptive bicycles, on cardiorespiratory fitness and gross motor function among children with CP at GMFCS Level IV. Method: We used a single-subject, A–B–A–B research design replicated across three participants aged 8–14 years with CP at GMFCS Level IV who attended three different schools. Cardiorespiratory fitness was assessed weekly during all study phases using the energy expenditure index (EEI). Gross motor function was assessed using the Gross Motor Function Measure–66 (GMFM–66) and goal attainment scaling (GAS). During the intervention phases, an adaptive bicycle-riding programme was carried out daily at school for up to 30 minutes. Results: One participant demonstrated significant improvement on the EEI. All participants demonstrated improvement in gross motor function as determined by the GMFM–66 and GAS. Insights were garnered pertaining to the design for large-scale future studies. Conclusions: This pilot evaluation supports further investigation of school-based adaptive bicycle-riding programmes for children who have CP at GMFCS Level IV.
Implementation of a home-based standing program may have contributed to improved motor skills for this child. Further research is needed to determine the effect of standing interventions on functional motor development for children with severe CP.
Adolescents with traumatic brain injury (TBI) are often discharged from physical therapy (PT) services without transitioning into exertional conditioning programs. Active participation in physical activities with peers at school is essential to achieve a sense of accomplishment and acceptance. Factors such as reduced aerobic fitness and residual gait impairments can lead to limited participation and peer interaction. The purpose of this case report was to describe the impact of home-based circuit training (HBCT) focusing on strength and balance on gait speed (GS), energy expenditure, and functional performance in a 17-year-old female with severe TBI. The participant sustained a TBI from a motor vehicle crash. Although she was ambulatory and independent with the basic activities of daily living following two years of rehabilitation, she presented with activity limitations and participation restrictions at school. The participant performed a 4-week HBCT program developed by a school physical therapist that focused on strength and balance. At the end of 4 weeks, improvements were observed in 6 MWT (change = 79.7 m), GS (change = 0.22 m/s), and the COPM scores (performance score change = 2.8, satisfaction score change = 2.2, MCID = 2). Improvements in functional performance, gait speed, and self-perception of occupational performance were observed following 4-week HBCT. Future clinical trials on short duration, HBCT program for children and young adults with TBI are recommended in order to establish effectiveness of HBCT.
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