Literature DB >> 15456033

Relationships between strap tension, interface pressures and spine correction in brace treatment of scoliosis.

Marie Beauséjour1, Yvan Petit, Guy Grimard, Carl-Eric Aubin, Jean Dansereau, Hubert Labelle.   

Abstract

The Boston brace has been shown to efficiently prevent scoliosis curve progression. However, it rarely achieves complete 3-D correction; its adjustment being often empirical and its biomechanical modes of action still remaining poorly understood. This study investigates the in-brace spinal shape (correction) in relationship with the patient's out-of-brace deformation, and the adjustment parameters of the brace, namely the strap tensions and the equivalent forces calculated at the patient-brace interface. Many of the observed relationships illustrate the fact that the in-brace spinal shape is strongly related to the characteristics of the patient's out-of-brace deformation. The pattern of pressure distribution as described by the equivalent forces computed in the thoracic, lumbar, pelvic and sternal regions has important effect on the in-brace Cobb angles, lumbar lordosis, frontal and sagittal imbalances and the apical axial rotations. The complex role of the strap tension on the correction has not been explained and needs further investigation. This project has the potential to give insight into the biomechanical effects of brace treatment by providing a statistical model leading to more rational and personalized brace adjustments.

Entities:  

Mesh:

Year:  2002        PMID: 15456033

Source DB:  PubMed          Journal:  Stud Health Technol Inform        ISSN: 0926-9630


  5 in total

1.  Brace technology thematic series: the progressive action short brace (PASB).

Authors:  Francesco Falciglia; Marco Giordano; Emanuele Marzetti; Vincenzo Guzzanti; Angelo G Aulisa; Giuseppe Mastantuoni; Marco Laineri
Journal:  Scoliosis       Date:  2012-02-23

Review 2.  2016 SOSORT guidelines: orthopaedic and rehabilitation treatment of idiopathic scoliosis during growth.

Authors:  Stefano Negrini; Sabrina Donzelli; Angelo Gabriele Aulisa; Dariusz Czaprowski; Sanja Schreiber; Jean Claude de Mauroy; Helmut Diers; Theodoros B Grivas; Patrick Knott; Tomasz Kotwicki; Andrea Lebel; Cindy Marti; Toru Maruyama; Joe O'Brien; Nigel Price; Eric Parent; Manuel Rigo; Michele Romano; Luke Stikeleather; James Wynne; Fabio Zaina
Journal:  Scoliosis Spinal Disord       Date:  2018-01-10

3.  2011 SOSORT guidelines: Orthopaedic and Rehabilitation treatment of idiopathic scoliosis during growth.

Authors:  Stefano Negrini; Angelo G Aulisa; Lorenzo Aulisa; Alin B Circo; Jean Claude de Mauroy; Jacek Durmala; Theodoros B Grivas; Patrick Knott; Tomasz Kotwicki; Toru Maruyama; Silvia Minozzi; Joseph P O'Brien; Dimitris Papadopoulos; Manuel Rigo; Charles H Rivard; Michele Romano; James H Wynne; Monica Villagrasa; Hans-Rudolf Weiss; Fabio Zaina
Journal:  Scoliosis       Date:  2012-01-20

4.  'SOSORT consensus paper on brace action: TLSO biomechanics of correction (investigating the rationale for force vector selection)'.

Authors:  M Rigo; S Negrini; H R Weiss; T B Grivas; T Maruyama; T Kotwicki
Journal:  Scoliosis       Date:  2006-07-20

5.  In-silico pre-clinical trials are made possible by a new simple and comprehensive lumbar belt mechanical model based on the Law of Laplace including support deformation and adhesion effects.

Authors:  Jérôme Molimard; Rébecca Bonnaire; Woo Suck Han; Reynald Convert; Paul Calmels
Journal:  PLoS One       Date:  2019-03-06       Impact factor: 3.240

  5 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.