This study intends to investigate the effect of bracing on respiratory function in the treatment of adolescent idiopathic scoliosis (AIS). In particular, it will look at the effect of the brace on respiratory function and 3D volume of the thoracic cage. An additional evaluation of the pressure forces of the brace, using a connected t-shirt, will be carried out. The investigators hypothesise that the brace will decrease the respiratory parameters and 3D volume of the thoracic cage, especially during deep breathing.
Scoliosis is a 3D deformity of the spine with curvatures occurring in the three planes of space. The brace is widely used for adolescent idiopathic scoliosis. The Cheneau-Toulouse-Munster (CTM) brace is a rigid brace, classically indicated for thoracic and lumbar curves. However, scoliosis induces structural deformation of the rib cage. This can lead to changes in thoracic volume associated with a respiratory disorder, mainly restrictive. But the effect of bracing on pulmonary function currently remains unclear. Few studies in the literature have looked at the impact of the brace on lung function. In those studies, the findings were based on Pulmonary Function Test (PFT) results only. In the CTM biomec study, the investigators propose to evaluate lung function by PFT associated with biplanar radiography using EOS® system, which allows 3D modelling of the rib cage. An additional evaluation of the pressure forces of the CTM brace, using a connected t-shirt, will be carried out to better understand the biomechanics of the brace. It will allow us to observe the stress surfaces on the thorax during the respiratory cycle and to compare them with the adaptation kinematics of the thoracic cage.
Study Type
OBSERVATIONAL
Enrollment
12
Full length, orthogonal anteroposterior and lateral X-rays will be taken with the Cheneau-Toulouse-Munster brace.
Chu Reims
Reims, France
Total Lung Capacity (TLC)
change with and without the brace
Time frame: 1 day
Forced expiratory volume in one second
change with and without the brace
Time frame: 1 day
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