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Lower limb extensor moments in children with spastic diplegic cerebral palsy
A E McNee1, A P Shortland, L C Eve
1One Small Step Gait Laboratory, Guy's Hospital, London SE1 9RT, UK.
Insights
Children with spastic diplegic cerebral palsy (SDCP) use knee extensors to maintain upright posture. Interventions targeting extensor moment redistribution may improve walking function in SDCP.
Area of Science:
- Biomechanical analysis of gait in children.
- Pediatric orthopedics and motor control.
Background:
- Spastic diplegic cerebral palsy (SDCP) affects gait, often leading to crouch gait.
- Understanding the biomechanics of gait in SDCP is crucial for effective interventions.
Purpose of the Study:
- To quantify and compare extensor moments at the ankle, knee, and hip during stance in children with SDCP and normally developing (ND) children.
- To investigate the relationship between knee flexion and extensor/support moments in children with SDCP.
Main Methods:
- Retrospective study analyzing gait data from 90 children with SDCP and 22 ND children.
- Quantification of mean extensor and support moments at the ankle, knee, and hip during the stance phase of gait.
Main Results:
- Children with SDCP exhibited greater variance in mean knee extensor and support moments compared to ND children.
- A strong positive correlation was found between mean knee extensor moment and minimum knee flexion in children with SDCP.
- A linear relationship was observed between support moment and knee flexion in the SDCP group.
Conclusions:
- Children with SDCP walking with a crouch gait depend on knee extensors to prevent lower limb collapse.
- Interventions aimed at modifying extensor moment distribution could potentially improve knee flexion control and prolong walking ability in SDCP.
Abstract:
In this retrospective study, we quantified the mean extensor moment at the ankle, knee and hip over the stance period in a group of independently ambulant children with spastic diplegia (n = 90; 167 limbs) and in a group of normally-developing (ND) children (n = 22; 22 limbs). The mean knee extensor moment and the mean support moment demonstrated greater variance in children with diplegia than in normally-developing children (P < 0.0001 and P < 0.001). This was explained by a strong relationship between the mean knee extensor moment and minimum knee flexion in stance (r2 = 0.615; P < 0.0001) in the affected group with a positive mean knee extensor moment for all those children who walked in greater than 20 degrees of knee flexion. We also found a linear relationship between the support moment and knee flexion (r2 = 0.805; P < 0.0001). Our data supported the biomechanical analysis of Hof [Gait Posture, 12 (2000) 196] who suggested that his modified support moment should be a linear function with eccentricity at the knee. Extensor moments at the ankle (r2 = 0.001376; P = 0.641) and hip (r2 = 0.0860; P = 0.000168) bore weak relationships with increasing knee flexion even though there was a strong positive relationship between minimum knee flexion and minimum hip flexion (r2 = 0.316; P < 0.0001). We conclude that children with spastic diplegic cerebral palsy (SDCP) who walk with a crouch gait rely on their knee extensors to prevent collapse of the lower limbs. Intervention directed at redistributing extensor moments between the joints of the lower limbs may slow the increase in knee flexion and prolong reasonable walking function in this group.
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