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Rectus femoris transfer surgery affects balance recovery in children with cerebral palsy: A computer simulation study
Misagh Mansouri1, Ashley E Clark1, Ajay Seth2
1Mechanical, Aerospace and Biomedical Engineering, University of Tennessee, Knoxville, TN, USA.
Insights
Rectus femoris tendon transfer surgery in children with cerebral palsy (CP) impacts balance recovery. This surgery may alter the rectus femoris muscle
Area of Science:
- Biomechanical engineering
- Pediatric orthopedics
- Neuromuscular control
Background:
- Stiff-knee gait in children with cerebral palsy (CP) is linked to rectus femoris over-activity.
- Rectus femoris transfer surgery is a common treatment, altering muscle function.
- The rectus femoris's role in balance control is not fully understood.
Purpose of the Study:
- To investigate the effect of rectus femoris tendon transfer on balance recovery in children with CP.
- To analyze balance in simulated pre- and post-surgical conditions.
- To compare balance recovery in mild versus moderate crouch postures.
Main Methods:
- Musculoskeletal modeling and forward dynamic simulation were employed.
- Neuromuscular control models simulated muscle excitations.
- Balance recovery was assessed using extrapolated center of mass and base of support metrics.
Main Results:
- Simulations showed significant differences in balance recovery post-rectus femoris tendon transfer (p=0.02).
- Post-surgical simulations demonstrated altered balance recovery parameters (bmin=-4.9cm, TtBmin=-0.1s) compared to pre-surgical (bmin=2.3cm, TtBmin=0.2s).
- Moderate crouch postures exhibited more stable balance recovery than mild crouch postures.
Conclusions:
- Rectus femoris tendon transfer surgery influences balance recovery in children with CP.
- The rectus femoris muscle plays a role in maintaining stability during balance tasks.
- Understanding these effects can inform surgical strategies for CP treatment.
Abstract:
Stiff-knee gait is a troublesome movement disorder among children with cerebral palsy (CP), where peak swing phase knee flexion is diminished due to over-activity of the rectus femoris muscle. A common treatment for stiff-knee gait, rectus femoris transfer surgery, moves the muscle's distal tendon from the patella to the sartorius insertion on the tibia. As a biarticular muscle, rectus femoris may play a role in motor control and have unrecognized benefits for maintaining balance. We used musculoskeletal modeling, neuromuscular control, and forward dynamic simulation to investigate the role of rectus femoris tendon transfer surgery on balance recovery after support-surface perturbations for children with CP adopting two different crouched postures. We combined both high-level supraspinal and low-level spinal signals to generate 92 muscle excitations for tracking experimental whole body center of mass positions and velocities. Stability during balance recovery was evaluated by the minimum distance between the extrapolated center of mass and base of support boundary (bmin) and the minimum time to reach the boundary (TtBmin). The balance recovery of pre-surgical simulations (bmin=2.3+1.1cm, TtBmin=0.2+0.1s) were different (p=0.02), on average, than post-surgical simulations (bmin=-4.9+11.4cm, TtBmin=-0.1+0.3s) of rectus femoris transfers. The moderate crouch simulations (bmin=2.4+0.4cm, TtBmin=0.2+0.03s) were more stable than the mild crouch simulations (bmin=1.2+0.3cm, TtBmin=0.1+0.02s) following anterior translations of the support surface. These findings suggest that tendon transfer of rectus femoris affects balance recovery in children with CP.
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