Related Experiment Video
Updated: Jan 28, 2026

Author Spotlight: Exploring the Potential of Massage Therapy in Cerebral Palsy Using Animal Models
Published on: August 11, 2023
Influence of impaired selective motor control on gait in children with cerebral palsy
J Y Zhou1, E Lowe2, K Cahill-Rowley1
1Department of Orthopaedic Surgery, Stanford University, Stanford, CA, USA and Motion & Gait Analysis Laboratory, Lucile Salter Packard Children's Hospital, Palo Alto, CA, USA.
Purpose:
Spastic cerebral palsy (CP) is characterized by four neuromuscular deficits: weakness, short muscle-tendon unit, muscle spasticity and impaired selective motor control (SMC). We examined the influence of impaired SMC on gait in children with bilateral spastic CP. Delineating the influence of neuromuscular deficits on gait abnormalities can guide surgical and therapeutic interventions to reduce long-term debilitating effects of CP.
Methods:
The relationship between impaired SMC and gait was assessed using multivariate linear regression analysis of Selective Control Assessment of the Lower Extremity (SCALE) in relation to stance phase knee flexion and temporal-spatial gait parameters calculated using 3D kinematics for 57 children with bilateral spastic CP, ages seven to 11 years.
Results:
Mean SCALE values were 5.8 (0 to 10, sd 3.0) and 5.7 (0 to 10, sd 2.9) for right and left legs, respectively. Multivariate linear regression models, including right and left SCALE and height, significantly predicted right and left knee flexion at initial contact (R = 0.479, p = 0.003; R = 0.452, p = 0.007, respectively) and right and left knee flexion in midstance (R = 0.428, p = 0.013; R = 0.407, p = 0.022, respectively). The model significantly predicted right and left step length (R = 0.645, p = 0.000; R = 0.523, p = 0.001, respectively) and predicted gait velocity (R = 0.444, p = 0.008). The model including SCALE did not predict step width.
Conclusion:
Results indicate impaired SMC predicts increased knee flexion at initial contact, and reduces step length and velocity. Understanding the influence of impaired SMC on gait can inform decisions regarding therapy and surgery, such as hamstring lengthening.
Level Of Evidence:
Level II Retrospective Study.
Related Concept Videos
Hierarchy of Motor Control
Frequency-dependent Selection
What is Natural Selection?
Bioavailability: Influencing Factors
The Influence of Affect on Cognition
The Influence of Cognition on Affect

