Related Experiment Video
Updated: Nov 10, 2025

Lower Limb Biomechanical Analysis of Healthy Participants
Published on: April 15, 2020
Development of Lower Extremity Strength in Ambulatory Children With Bilateral Spastic Cerebral Palsy in Comparison
Nicolaos Darras1, Eirini Nikaina2, Magda Tziomaki1
1Gait & Motion Analysis Center, ELEPAP, Athens, Greece.
Insights
Children with cerebral palsy (CP) have significantly lower lower limb strength than typically developing peers. This strength deficit, particularly in quadriplegic patients, reveals muscle imbalances crucial for targeted interventions.
Area of Science:
- Neurology
- Pediatrics
- Rehabilitation Medicine
Background:
- Bilateral spastic cerebral palsy (CP) affects motor function, impacting voluntary strength development.
- Understanding lower limb muscle strength is crucial for assessing functional limitations and guiding interventions in children with CP.
Purpose of the Study:
- To investigate the development of lower limb voluntary strength in ambulatory patients with bilateral CP.
- To compare muscle strength between children with CP (diplegic and quadriplegic) and typically developing (TD) controls.
- To identify patterns of muscle strength imbalance in individuals with CP.
Main Methods:
- Cross-sectional study involving 160 ambulatory patients with bilateral CP and 86 TD controls, aged 7-16 years.
- Isometric strength measurement of seven lower limb muscle groups using handheld dynamometry.
- Analysis of absolute force (AF) and normalized force (NF) values, comparing CP subtypes and TD controls across age groups.
Main Results:
- Children with CP exhibited significantly lower absolute and normalized lower limb strength compared to TD controls across all muscle groups and age ranges.
- Strength deficits were more pronounced in quadriplegic CP patients and those with more severe impairments (GMFCS III/IV).
- A significant pattern of muscle strength imbalance was observed between antagonist muscle groups in individuals with CP.
Conclusions:
- Children and adolescents with bilateral CP demonstrate reduced lower limb muscle strength compared to TD peers.
- The findings highlight the greater impact on strength in quadriplegic CP and more severe functional impairments.
- Significant strength imbalances between antagonist muscles in CP patients necessitate consideration in therapeutic strategies.
Abstract:
This cross-sectional study aimed to examine the development of lower limb voluntary strength in 160 ambulatory patients with bilateral spastic cerebral palsy (CP) (106 diplegics/54 quadriplegics) and 86 typically developing (TD) controls, aged 7-16 years. Handheld dynamometry was used to measure isometric strength of seven muscle groups (hip adductors and abductors, hip extensors and flexors, knee extensors and flexors, and ankle dorsiflexors); absolute force (AF) values in pounds were collected, which were then normalized to body weight (NF). AF values increased with increasing age (p < 0.001 for all muscle groups), whereas NF values decreased through adolescence (p < 0.001 for all muscle groups except for hip abduction where p = 0.022), indicating that increases in weight through adolescence led to decreases in relative force. Both AF and NF values were significantly greater in TD subjects when compared with children with CP in all muscle and all age groups (p < 0.001). Diplegics and quadriplegics demonstrated consistently lower force values than TD subjects for all muscle groups, except for the hip extensors where TD children had similar values with diplegics (p = 0.726) but higher than quadriplegics (p = 0.001). Diplegic patients also exhibited higher values than quadriplegics in all muscles, except for the knee extensors where their difference was only indicative (p = 0.056). The conversion of CP subjects' force values as a percentage of the TD subjects' mean value revealed a pattern of significant muscle strength imbalance between the CP antagonist muscles, documented from the following deficit differences for the CP muscle couples: (hip extensors 13%) / (hip flexors 32%), (adductors 27%) / (abductors 52%), and (knee extensors 37%) / (knee flexors 53%). This pattern was evident in all age groups. Similarly, significant force deficiencies were identified in GMFCS III/IV patients when compared with TD children and GMFCS I/II patients. In this study, we demonstrated that children and adolescents with bilateral CP exhibited lower strength values in lower limb muscles when compared with their TD counterparts. This difference was more prevalent in quadriplegic patients and those with a more severe impairment. An important pattern of muscle strength imbalance between the antagonist muscles of the CP subjects was revealed.
More Related Videos
08:40Quantifying Arms and Legs Contributions during Repetitive Electrically-Assisted Sit-To-Stand Exercise in Paraplegics: A Pilot Study
Published on: November 11, 2022
07:30Muscle Imbalances: Testing and Training Functional Eccentric Hamstring Strength in Athletic Populations
Published on: May 1, 2018