Idiopathic Adolescent Scoliosis, Scoliosis Idiopathic
Conditions
Keywords
Core stabilization exercises, Rotational Angular Breathing Exercises, Cobb's angle, Inspiratory capacity, Idiopathic scoliosis, Spinal Appearance, Trunk rotation
Brief summary
This study is a single-blind, two-arm parallel-group randomized controlled trial designed to evaluate the effects of core stabilization exercises combined with rotational angular breathing exercises on adolescents with idiopathic scoliosis. Participants aged 10-18 years with a Cobb angle between 10° and 25° will be randomly assigned to either an experimental group receiving a structured exercise program or a control group receiving standard care. The intervention will be conducted over 12 weeks, with outcomes assessed at baseline, post-intervention, and follow-up periods. Primary outcomes include Cobb angle, angle of trunk rotation, inspiratory capacity, and spinal appearance. The study aims to determine whether the combined exercise approach is more effective than standard care in improving spinal alignment, respiratory function, and physical appearance.
Detailed description
Adolescent idiopathic scoliosis is a three-dimensional spinal deformity characterized by lateral curvature and vertebral rotation, commonly developing during adolescence. It is associated with postural asymmetry, trunk deformity, reduced pulmonary function, and decreased quality of life. Conservative management strategies, particularly exercise-based interventions, are widely used to prevent progression and improve functional outcomes. Core stabilization exercises focus on strengthening the muscles surrounding the spine, including abdominal, paraspinal, and pelvic muscles. These exercises enhance spinal stability, improve postural control, and reduce compensatory movement patterns. However, core stabilization alone may not fully address thoracic asymmetry and respiratory limitations associated with scoliosis. Rotational angular breathing exercises are scoliosis-specific techniques aimed at improving thoracic expansion, promoting spinal de-rotation, and enhancing pulmonary function. These exercises involve controlled breathing patterns that target the concave side of the rib cage, facilitating improved ventilation and postural correction. Although both interventions have shown individual effectiveness, limited evidence exists regarding their combined effects on structural, functional, and patient-reported outcomes in adolescents with idiopathic scoliosis. Therefore, this study aims to evaluate the combined impact of core stabilization and rotational angular breathing exercises on multiple clinical outcomes. This study will be conducted as a single-blind, randomized controlled trial with two parallel groups. A total of 32 participants meeting eligibility criteria will be recruited and randomly assigned in a 1:1 ratio to either the experimental group or the control group. Participants in the experimental group will undergo a supervised exercise program consisting of core stabilization exercises (planks, bridges, bird dog, and dead bug) combined with rotational angular breathing exercises. The program will be performed 3-4 times per week for 12 weeks, with gradual progression in intensity and duration. The control group will receive standard care without a structured exercise program. Outcome measures will be assessed at baseline, immediately after the 12-week intervention, and at 3-month and 6-month follow-up periods. Primary outcomes include Cobb angle measured via radiographs, angle of trunk rotation assessed using a scoliometer, inspiratory capacity measured using spirometry, and spinal appearance evaluated using the Spinal Appearance Questionnaire. Secondary outcomes include quality of life assessed using the Scoliosis Research Society-22 questionnaire. Blinding will be applied at the level of outcome assessors to reduce measurement bias. Statistical analysis will be conducted to compare within-group and between-group differences over time. The results of this study are expected to provide evidence on the effectiveness of a combined exercise approach targeting both biomechanical and respiratory components of scoliosis. This may support the development of comprehensive rehabilitation protocols for adolescents with idiopathic scoliosis.
Interventions
Core stabilization exercises: planks, bridges, bird dog, and dead bug Rotational angular breathing exercises: emphasizing thoracic expansion, asymmetric rib cage mobility, and postural correction through controlled inhalation and prolonged exhalation All exercises will be performed under supervised conditions initially, with emphasis on neuromuscular control, spinal stability, and coordinated breathing. Each session will last 40 minutes, including: 3 sessions per week 12-week intervention period 5 minutes warm-up 25 minutes core stabilization exercises 10 minutes rotational angular breathing exercises • Cool-down and postural awareness exercises
Participants in the control group will receive conventional physiotherapy management routinely used for idiopathic scoliosis. The intervention will focus on posture correction, spinal mobility, flexibility, general strengthening, and breathing awareness exercises without specialized core stabilization or rotational angular breathing techniques. The program will include: Warm-up exercises Stretching exercises for trunk and lower limb muscles Spinal mobility exercises Basic abdominal and back strengthening exercises Postural correction and ergonomic education Diaphragmatic breathing and relaxation exercises Cool-down exercises Sessions will be supervised initially by a physiotherapist to ensure correct technique and safety. Frequency and Duration 3 sessions per week 12-week intervention period 40 minutes per session Session Structure 5 minutes warm-up 25 minutes conventional physiotherapy exercises 5 minutes breathing exercises 5 minutes cool-down and posture education
Sponsors
Study design
Masking description
We simply did not inform the outcome assessor about the group allocation
Intervention model description
This study is a randomized controlled interventional trial designed to evaluate the effects of core stabilization exercises combined with rotational angular breathing exercises on Cobb's angle, trunk rotation, inspiratory capacity, and spinal appearance among patients with idiopathic scoliosis. Eligible participants will be randomly allocated into two parallel groups using a simple randomization method. The experimental group will receive a structured exercise program consisting of core stabilization exercises and rotational angular breathing exercises in addition to conventional physiotherapy care. The control group will receive standard conventional physiotherapy management only. Both groups will undergo supervised treatment sessions three times per week for 12 weeks, with each session lasting approximately 40 minutes. Outcome measures will be assessed at baseline and after completion of the intervention period to compare the effectiveness of the interventions between groups.
Eligibility
Inclusion criteria
* Adolescents aged 10-17 years * Both male and female participants * Diagnosed cases of idiopathic scoliosis * Cobb's angle between 10° and 25° * Both thoracic and lumbar spine scoliosis patients * Both C-shaped or S-shaped curve scoliosis patients
Exclusion criteria
* Previous spinal surgery * Significant neuromuscular disorders (e.g, muscular dystrophy, cerebral palsy) * Other medical conditions affecting participation (e.g, respiratory or cardiac) * Any contraindication to exercise program
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Cobb's angle | 12 Weeks | Cobb angle is a radiographic measure used to quantify the degree of spinal curvature in scoliosis. It is measured by identifying the most tilted vertebrae at the upper and lower ends of the curve on an anteroposterior spinal radiograph and calculating the angle between intersecting perpendicular lines drawn from these vertebrae. Time Frame: Baseline, 4 weeks, 8 weeks and 12 weeks |
| Trunk rotation | 12 weeks | Angle of Trunk Rotation is assessed using a scoliometer during the Adam's Forward Bend Test. The device is placed over the spine at the point of maximum deformity to quantify axial trunk rotation and rib hump prominence. Time Frame: Baseline, 4 weeks, 8 weeks and 12 weeks |
| Inspiratory capacity | 12 weeks | Inspiratory capacity is defined as the maximum volume of air that can be inhaled after a normal expiration. It is measured using spirometry with a calibrated spirometer to assess pulmonary function and thoracic expansion. Time Frame: Baseline, 4 weeks, 8 weeks and 12 weeks |
| Spinal appearance | 12 weeks | The Spinal Appearance Questionnaire is a patient-reported outcome measure that evaluates the perception of spinal deformity and cosmetic appearance. It includes domains related to trunk asymmetry, curve perception, and self-image. Time Frame: Baseline, 4 weeks, 8 weeks and 12 weeks |
Countries
Pakistan
Contacts
Lahore University of Biological and Applied Sciences