Literature DB >> 22361349

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

Francesco Falciglia1, Marco Giordano1, Emanuele Marzetti2, Vincenzo Guzzanti1,3, Angelo G Aulisa1, Giuseppe Mastantuoni1, Marco Laineri4.   

Abstract

BACKGROUND: The Progressive Action Short Brace (PASB) is a custom-made thoraco-lumbar-sacral orthosis (TLSO), devised in 1976 by Dr. Lorenzo Aulisa (Institute of Orthopedics at the Catholic University of the Sacred Heart, Rome, Italy). The PASB was designed to overcome the limits imposed by the trunk anatomy. Indeed, the particular geometry of the brace is able to generate internal forces that modify the elastic reaction of the spine. The PASB is indicated for the conservative treatment of lumbar and thoraco-lumbar scoliosis. The aim of this article is to explain the biomechanic principles of the PASB and the rationale underlying its design. Recently published studies reporting the results of PASB-based treatment of adolescent scoliotic patients are also discussed. DESCRIPTION AND PRINCIPLES: On the coronal plane, the upper margin of the PASB, at the side of the curve concavity, prevents the homolateral bending of the scoliotic curve. The opposite upper margin ends just beneath the apical vertebra. The principle underlying such configuration is that the deflection of the inferior tract of a curved elastic structure, fixed at the bottom end, causes straightening of its upper tract. Therefore, whenever the patient bends towards the convexity of the scoliotic curve, the spine is deflected. On the sagittal plane, the inferior margins of the PASB reach the pelvitrochanteric region, in order to stabilize the brace on the pelvis. The transverse section of the brace above the pelvic grip consists of asymmetrical ellipses. This allows the spine to rotate towards the concave side only, leading to the continuous generation of derotating moments. On the sagittal plane, the brace is contoured so as to reduce the lumbar lordosis. The PASB, by allowing only those movements counteracting the progression of the curve, is able to produce corrective forces that are not dissipated. Therefore, the brace is based on the principle that a constrained spine dynamics can achieve the correction of a curve by inverting the abnormal load distribution during skeletal growth.
RESULTS: Since its introduction in 1976, several studies have been published supporting the validity of the biomechanical principles to which the brace is inspired. In this article, we present the outcome of a case series comprising 110 patients with lumbar and thoraco-lumbar curves treated with PASB brace. Antero-posterior radiographs were used to estimate the curve magnitude (CM) and the torsion of the apical vertebra (TA) at 5 time points: beginning of treatment (t1), one year after the beginning of treatment (t2), intermediate time between t1 and t4 (t3), end of weaning (t4), 2-year minimum follow-up from t4 (t5). The average CM value was 29.3°Cobb at t1 and 13.0°Cobb at t5. TA was 15.8° Perdroille at t1 and 5.0° Perdriolle at t5. These results support the efficacy of the PASB in the management of scoliotic patients with lumbar and thoraco-lumbar curves.
CONCLUSION: The results obtained in patients treated with the PASB confirm the validity of our original biomechanical approach. The efficacy of the PASB derives not only from its unique biomechanical features but also from the simplicity of its design, construction and management.

Entities:  

Year:  2012        PMID: 22361349      PMCID: PMC3348014          DOI: 10.1186/1748-7161-7-6

Source DB:  PubMed          Journal:  Scoliosis        ISSN: 1748-7161


  17 in total

1.  Biomechanics of the conservative treatment in idiopathic scoliotic curves in surgical "grey-area".

Authors:  L Aulisa; S Lupparelli; E Pola; A G Aulisa; G Mastantuoni; L Pitta
Journal:  Stud Health Technol Inform       Date:  2002

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

Authors:  Marie Beauséjour; Yvan Petit; Guy Grimard; Carl-Eric Aubin; Jean Dansereau; Hubert Labelle
Journal:  Stud Health Technol Inform       Date:  2002

3.  Intervertebral disc biomechanics in the pathogenesis of idiopathic scoliosis.

Authors:  Theodoros B Grivas; Elias Vasiliadis; Marinos Malakasis; Vasilios Mouzakis; Dimitrios Segos
Journal:  Stud Health Technol Inform       Date:  2006

4.  Idiopathic scoliosis. Analysis of curve patterns and the preliminary results of Milwaukee-brace treatment in one hundred sixty-nine patients.

Authors:  J H Moe; D N Kettleson
Journal:  J Bone Joint Surg Am       Date:  1970-12       Impact factor: 5.284

5.  [Biomechanical analysis of the spinal brace system in idiopathic scoliosis].

Authors:  L Aulisa; A Di Benedetto; A Vinciguerra
Journal:  Arch Putti Chir Organi Mov       Date:  1981

6.  The Milwaukee brace in idiopathic scoliosis: evaluation of 123 completed cases.

Authors:  R P Keiser; H L Shufflebarger
Journal:  Clin Orthop Relat Res       Date:  1976 Jul-Aug       Impact factor: 4.176

7.  Adolescent idiopathic scoliosis, bracing, and the Hueter-Volkmann principle.

Authors:  Frank P Castro
Journal:  Spine J       Date:  2003 May-Jun       Impact factor: 4.166

8.  Determination of quality of life in adolescents with idiopathic scoliosis subjected to conservative treatment.

Authors:  Angelo G Aulisa; Vincenzo Guzzanti; Carlo Perisano; Emanuele Marzetti; Alessandro Specchia; Marco Galli; Marco Giordano; Lorenzo Aulisa
Journal:  Scoliosis       Date:  2010-09-28

9.  '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

10.  Biomechanical spinal growth modulation and progressive adolescent scoliosis--a test of the 'vicious cycle' pathogenetic hypothesis: summary of an electronic focus group debate of the IBSE.

Authors:  Ian A F Stokes; R Geoffrey Burwell; Peter H Dangerfield
Journal:  Scoliosis       Date:  2006-10-18
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  10 in total

1.  Evaluation of the efficiency of the Chêneau brace on scoliosis deformity : A systematic review of the literature.

Authors:  Mohammad Taghi Karimi; Timon Rabczuk; Mahsa Kavyani
Journal:  Orthopade       Date:  2018-03       Impact factor: 1.087

Review 2.  The classification of scoliosis braces developed by SOSORT with SRS, ISPO, and POSNA and approved by ESPRM.

Authors:  Stefano Negrini; Angelo Gabriele Aulisa; Pavel Cerny; Jean Claude de Mauroy; Jeb McAviney; Andrew Mills; Sabrina Donzelli; Theodoros B Grivas; M Timothy Hresko; Tomasz Kotwicki; Hubert Labelle; Louise Marcotte; Martin Matthews; Joe O'Brien; Eric C Parent; Nigel Price; Rigo Manuel; Luke Stikeleather; Michael G Vitale; Man Sang Wong; Grant Wood; James Wynne; Fabio Zaina; Marco Brayda Bruno; Suncica Bulat Würsching; Caglar Yilgor; Patrick Cahill; Eugenio Dema; Patrick Knott; Andrea Lebel; Grigorii Lein; Peter O Newton; Brian G Smith
Journal:  Eur Spine J       Date:  2022-02-21       Impact factor: 3.134

Review 3.  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

4.  In defense of adolescents: They really do use braces for the hours prescribed, if good help is provided. Results from a prospective everyday clinic cohort using thermobrace.

Authors:  Sabrina Donzelli; Fabio Zaina; Stefano Negrini
Journal:  Scoliosis       Date:  2012-05-31

5.  Prospective study and new concepts based on scoliosis detorsion of the first 225 early in-brace radiological results with the new Lyon brace: ARTbrace.

Authors:  Jean Claude de Mauroy; Cyril Lecante; Frédéric Barral; Sophie Pourret
Journal:  Scoliosis       Date:  2014-11-19

6.  The three dimensional analysis of the Sforzesco brace correction.

Authors:  Sabrina Donzelli; Fabio Zaina; Monia Lusini; Salvatore Minnella; Stefano Respizzi; Luca Balzarini; Salvatore Poma; Stefano Negrini
Journal:  Scoliosis Spinal Disord       Date:  2016-10-14

7.  SOSORT Award Winner 2015: a multicentre study comparing the SPoRT and ART braces effectiveness according to the SOSORT-SRS recommendations.

Authors:  Fabio Zaina; Jean Claude de Mauroy; Sabrina Donzelli; Stefano Negrini
Journal:  Scoliosis       Date:  2015-08-11

8.  Scoliosis curve analysis with Milwaukee orthosis based on Open SIMM modeling.

Authors:  Mohammad Karimi; Mahsa Kavyani
Journal:  J Craniovertebr Junction Spine       Date:  2015 Jul-Sep

9.  Correlation between compliance and brace treatment in juvenile and adolescent idiopathic scoliosis: SOSORT 2014 award winner.

Authors:  Angelo G Aulisa; Marco Giordano; Francesco Falciglia; Emanuele Marzetti; Andrea Poscia; Vincenzo Guzzanti
Journal:  Scoliosis       Date:  2014-06-13

Review 10.  Scoliosis conservative treatment: A review of literature.

Authors:  Mohammad Taghi Karimi; Timon Rabczuk
Journal:  J Craniovertebr Junction Spine       Date:  2018 Jan-Mar
  10 in total

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