Exploring Temporospatial Gait Asymmetry, Dynamic Balance, and Locomotor Capacity After a 12-month Split-belt Treadmill Training in Adolescents With Unilateral Cerebral Palsy: A Randomized Clinical Study
Trial Snapshot
- Phase
- Not Applicable
- Status
- Completed
- Sponsor
- Cairo University
- Enrollment
- 52
- Locations
- 1
- Primary Endpoint
- Temporal gait asymmetry index
Study Overview
Brief Summary
This study was designed to investigate the effect of repeated split-belt treadmill waking practice on gait symmetry, dynamic balance control, and locomotor capacity in adolescents with unilateral cerebral palsy (ULCP). Fifty-two children with ULCP were randomly allocated to the split-belt treadmill walking (n = 26; undergone split-elt treadmill training or the Control group (n =23, received standard rehabilitation program). Both groups were assessed for gait symmetry, dynamic balance control, and locomotor capacity pre and post-treatment.
Detailed Description
Fifty-two children with ULCP were recruited from the Physical Therapy Outpatient Clinic of the College of Applied Medical Sciences, Prince Sattam bin Abdulaziz University, King Khalid Hospital, and a tertiary referral hospital, Al-Kharj, Saudi Arabia. Their age ranged between 10 and 16 years, were functioning at levels I or II according to the Gross Motor Function Classification System, and had spasticity levels 1 or 1+ per the Modified Ashworth Scale. Children were excluded if they had fixed deformities, underwent neuromuscular or orthopedic surgery in the last 12 months, submitted to BOTOX injection in the past 6 months, had attentional neglect, and if they had cardiopulmonary problems that could be exacerbated by exercise.
Outcome measures
- Gait-symmetry Indices: Gait symmetry indices (Spatial and temporal) were measured through the portable GAITRite system.
- Dynamic balance: The directional dynamic limit of stability (forward, backward, paretic, and non-paretic) and overall limit of stability were assessed using the Biodex balance system.
- Locomotor capacity: This was assessed through the 6-minute walk test (6-MWT), the Timed Up and Down Stair test (TUDS), and the 10-meter Shuttle Run Test (10mSRT).
Both groups were trained for one hour, three times a week, for 12 successive weeks. The split-belt treadmill walking group performed repetitive split-belt treadmill training with an error-augmentation strategy (i.e., exaggeration of the initial step-length asymmetry). The control group received the standard rehabilitation program, which comprised advanced balance training, and gait training exercises, postural and flexibility exercises, strength training exercises.
Study Design
- Study Type
- Interventional
- Allocation
- Randomized
- Intervention Model
- Parallel
- Primary Purpose
- Treatment
- Masking
- Single (Outcomes Assessor)
Masking Description
This was a single-blind protocol. The researcher who collected the data was blinded to the treatment allocation.
Eligibility Criteria
- Ages
- 10 Years to 16 Years (Child)
- Sex
- All
- Accepts Healthy Volunteers
- No
Inclusion Criteria
- •Unilateral cerebral palsy
- •Age 10-16 years
- •Motor function level I or II according to the Gross Motor Function Classification System.
- •Spasticity level 1 or 1+ according to the Modified Ashworth Scale
Exclusion Criteria
- •Structural deformities/contractures
- •Musculoskeletal or neural surgery in the last year
- •BOTOX injection in the last 6 months.
- •Cardiopulmonary disorders that could be exacerbated by exercise.
- •Perceptual and/or behavioral disorders.
Arms & Interventions
Split-belt treadmill walking group
Participants in this group performed repeated split-belt treadmill training with an error-augmentation strategy.
Intervention: Split-belt treadmill training (Other)
Control group
Participants in this group received the standard physical rehabilitation program
Intervention: Standard physical therapy (Other)
Outcomes
Primary Outcomes
Temporal gait asymmetry index
Time Frame: 2 months
was measured about the single-limb support time of the paretic and non-paretic leg The temporal gait asymmetry index through the portable GAITRite system. Lower scores indicate a more symmetrical pattern.
Spatial gait asymmetry index
Time Frame: 2 months
The spatial gait asymmetry index was measured about the step length of the paretic and non-paretic leg through the portable GAITRite system. Lower scores indicate a more symmetrical pattern.
Dynamic limit of postural stability
Time Frame: 2 months
The capacity to control and move the center of gravity in various directions across their base of support was assessed utilizing the Biodex balance system. Values are expressed as accuracy % and higher scores mean better balance capability.
Secondary Outcomes
- Six-minute walk test(2 months)
- Timed Up and Down Stair test(2 months)
- 10-meter Shuttle Run Test(2 months)
Investigators
Ragab Kamal Elnaggar
Associate Professor
Cairo University
