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Developpement et validation d'un outil clinique pour l'analyse quantitative de la posture aupres de personnes atteintes d'une scoliose idiopathique

Posted on:2011-02-17Degree:Ph.DType:Thesis
University:Universite de Montreal (Canada)Candidate:Fortin, CaroleFull Text:PDF
GTID:2468390011471202Subject:Health Sciences
Abstract/Summary:
Idiopathic scoliosis (IS) is characterized by three-dimensional (3D) deformity of the spine and rib cage which can increase during growth. The morphologic changes of the trunk result in posture asymmetries. Correction of posture is an important goal of physiotherapy interventions among persons with IS to prevent scoliosis progression, to reduce morphologic deformities and their impact on quality of life. Currently, there are no tools that globally quantify changes in posture that may be attributable to scoliosis progression or to treatment effectiveness, that are usable in a clinical setting. The objective of this thesis was thus to develop and validate a new clinical quantitative posture assessment tool among persons with IS. More specifically, this project aims to determine reliability and concurrent validity of posture indices (PI) of this new tool and to verify their capacity to detect changes between standing and sitting positions.;Our results show a good level of reliability for the majority of PI of the 2D tool. Correlation between 2D and 3D PI was good for shoulder, scapula, trunk list, waist angles, thoracic scoliosis and pelvis but fair to moderate for thoracic kyphosis, lumbar lordosis and thoracolumbar or lumbar scoliosis. The correlation between 2D and radiograph measurements was good for trunk list, thoracic scoliosis and thoracic kyphosis. Our tool can detect differences between standing and sitting posture for ten out of thirteen PI. A few recommendations specific to this work are: camera height should be adjusted according to the subject's height; training of judges is important to maximize accuracy in placement of markers; and measurement of sagittal vertebral curves may be facilitated by using markers mounted on pins.;In conclusion, the tool developed in this thesis has good psychometric properties to evaluate posture. This tool should contribute to clinical practice by facilitating the analysis of standing and sitting posture. This tool may also be a good alternative to monitor thoracic scoliosis progression in a clinical setting and may contribute to a reduction in the use of x-rays in the follow-up of youths with thoracic IS. It may also be useful to verify the effectiveness of therapeutic interventions on posture.;Keywords: Idiopathic scoliosis, posture, reliability, validity, generalizability theory;We conducted a literature review and selected 34 PI representing frontal and sagittal alignment of the different body segments. We constructed a software-based quantitative posture assessment tool to calculate different PI (angular and linear measurements). The software has a user-friendly graphical interface and allows calculation of PI from a set of markers selected interactively on digital photographs. For the reliability and validity studies, standing posture of 70 participants aged 10 to 20 years old with IS (Cobb angle: 15° to 60°) was assessed on two occasions by two physiotherapists. Markers placed on several bony landmarks as well as natural reference points (eyes, ear lobe, etc.) were used to measure the PI from photographs with the 2D tool and to calculate 3D PI obtained from trunk reconstructions with a surface topography system. Frontal and sagittal Cobb angles and trunk list were also calculated on radiographs. The generalizability theory was used to estimate the reliability and standard error of measurement (SEM) of PI of the 2D tool. Pearson correlation coefficients served to estimate concurrent validity of the 2D trunk PI with corresponding 3D PI and with those obtained from radiographs. Fifty participants were assessed for the comparative study between standing and sitting positions. We compared the average values of each PI in standing and long sitting positions using paired t-tests.
Keywords/Search Tags:Posture, Scoliosis, 3D PI, Sitting positions, 2D tool, Standing, Quantitative
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