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Published in: European Spine Journal 2/2005

01-03-2005 | Original Article

Demonstration of vertebral and disc mechanical torsion in adolescent idiopathic scoliosis using three-dimensional MR imaging

Authors: Daniel Birchall, David Hughes, Barbara Gregson, Brad Williamson

Published in: European Spine Journal | Issue 2/2005

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Abstract

This study was designed to demonstrate and measure mechanical torsion in patients with adolescent idiopathic scoliosis using three-dimensional magnetic resonance (MR) imaging. Ten patients with adolescent idiopathic scoliosis were imaged with three-dimensional MR imaging, and the data post-processed through multiplanar reconstruction to produce images angled through individual endplates. Transverse rotation was measured at each endplate and these measurements used to calculate the amount of vertebral and disc mechanical torsion present. A test object was imaged in order to validate the measurement technique. Mechanical torsion was demonstrated within the vertebral bodies and discs of the imaged subjects, with vertebral mechanical torsion contributing on average 45% of the overall transverse plane deformity. It is concluded that deformation occurs in the transverse plane within the vertebrae and discs of subjects with idiopathic scoliosis, and a significant proportion of the rotation present in the scoliotic spine occurs as a result of plastic deformation within the vertebrae themselves. We believe that this is the first systematic demonstration of mechanical torsion in idiopathic scoliosis.
Literature
1.
go back to reference Aaro S, Dahlborn M (1981) Estimation of vertebral rotation and the spinal and rib cage deformity in scoliosis by computer tomography. Spine 6:460–467PubMed Aaro S, Dahlborn M (1981) Estimation of vertebral rotation and the spinal and rib cage deformity in scoliosis by computer tomography. Spine 6:460–467PubMed
2.
go back to reference Adams W (1865) Lectures on the pathology and treatment of lateral and other forms of curvature of the spine. Churchill, London Adams W (1865) Lectures on the pathology and treatment of lateral and other forms of curvature of the spine. Churchill, London
3.
go back to reference Altman DG, Bland JM (1983) Measurement in medicine: the analysis of method comparison studies. Statistician 32:307–317 Altman DG, Bland JM (1983) Measurement in medicine: the analysis of method comparison studies. Statistician 32:307–317
4.
go back to reference Arkin AM (1949) The mechanism of the structural changes in scoliosis. J Bone Joint Surg 31-A:519–528 Arkin AM (1949) The mechanism of the structural changes in scoliosis. J Bone Joint Surg 31-A:519–528
5.
go back to reference Arkin AM, Katz JF (1956) The effects of pressure on epiphyseal growth. J Bone Joint Surg 38-A:1056–1076 Arkin AM, Katz JF (1956) The effects of pressure on epiphyseal growth. J Bone Joint Surg 38-A:1056–1076
6.
go back to reference Aubin CE, Dansereau J, Petit Y, Parent F, DeGuise JA, Labelle H (1998) Three-dimensional measurement of wedged scoliotic vertebrae and intervertebral disks. Eur Spine J 7:59–65CrossRefPubMed Aubin CE, Dansereau J, Petit Y, Parent F, DeGuise JA, Labelle H (1998) Three-dimensional measurement of wedged scoliotic vertebrae and intervertebral disks. Eur Spine J 7:59–65CrossRefPubMed
7.
go back to reference Birchall D, Hughes DG, Hindle J, Robinson L, Williamson JB (1997) Measurement of vertebral rotation in adolescent idiopathic scoliosis using three-dimensional MRI. Spine 22:2403–7CrossRefPubMed Birchall D, Hughes DG, Hindle J, Robinson L, Williamson JB (1997) Measurement of vertebral rotation in adolescent idiopathic scoliosis using three-dimensional MRI. Spine 22:2403–7CrossRefPubMed
8.
go back to reference Dickson RA, Lawton JO, Archer IA, Butt WP (1984) The pathogenesis of idiopathic scoliosis: biplanar asymmetry. J Bone Joint Surg 66B:8–15 Dickson RA, Lawton JO, Archer IA, Butt WP (1984) The pathogenesis of idiopathic scoliosis: biplanar asymmetry. J Bone Joint Surg 66B:8–15
9.
go back to reference Haas SL (1939) Experimental production of scoliosis. J Bone Joint Surg 21:963–968 Haas SL (1939) Experimental production of scoliosis. J Bone Joint Surg 21:963–968
10.
go back to reference Ho EK, Upadhyay SS, Chan FL, Leong JC (1993) New methods of measuring vertebral rotation from computed tomographic scans. Spine 18:1173–1177PubMed Ho EK, Upadhyay SS, Chan FL, Leong JC (1993) New methods of measuring vertebral rotation from computed tomographic scans. Spine 18:1173–1177PubMed
11.
go back to reference Hueter C (1862) Anatomische studien an der extremitaetengelenken neugeborener und erwachsener. Virchows Arch Pathol Anat Physiol 24:572–599 Hueter C (1862) Anatomische studien an der extremitaetengelenken neugeborener und erwachsener. Virchows Arch Pathol Anat Physiol 24:572–599
12.
go back to reference Kojima T, Kurokawa T (1992) Rotation vector: a new method for representation of three-dimensional deformity in scoliosis. Spine 17:1296–1303PubMed Kojima T, Kurokawa T (1992) Rotation vector: a new method for representation of three-dimensional deformity in scoliosis. Spine 17:1296–1303PubMed
13.
go back to reference Kojima T, Kurokawa T (1992) Quantitation of three-dimensional deformity of idiopathic scoliosis. Spine 17:S22–29PubMed Kojima T, Kurokawa T (1992) Quantitation of three-dimensional deformity of idiopathic scoliosis. Spine 17:S22–29PubMed
14.
go back to reference Krismer M, Sterzinger W, Haid C, Frischhut B, Bauer R (1996) Axial rotation measurements of scoliotic vertebrae by means of computed tomography scans. Spine 21:576–581CrossRefPubMed Krismer M, Sterzinger W, Haid C, Frischhut B, Bauer R (1996) Axial rotation measurements of scoliotic vertebrae by means of computed tomography scans. Spine 21:576–581CrossRefPubMed
15.
go back to reference Liljenqvist UR, Allkemper T, Hackenberg L, Link TM, Steinbeck J, Halm HF (2002) Analysis of vertebral morphology in idiopathic scoliosis with use of magnetic resonance imaging and multiplanar reconstruction. J Bone Joint Surg 84A:359–368 Liljenqvist UR, Allkemper T, Hackenberg L, Link TM, Steinbeck J, Halm HF (2002) Analysis of vertebral morphology in idiopathic scoliosis with use of magnetic resonance imaging and multiplanar reconstruction. J Bone Joint Surg 84A:359–368
16.
go back to reference Parent S, Labelle H, Skalli W, Latimer B, deGuise J (2002) Morphometric analysis of anatomic scoliotic specimens. Spine 27:2305–2311CrossRefPubMed Parent S, Labelle H, Skalli W, Latimer B, deGuise J (2002) Morphometric analysis of anatomic scoliotic specimens. Spine 27:2305–2311CrossRefPubMed
17.
go back to reference Roaf R (1966) The basic anatomy of scoliosis. J Bone Joint Surg 48-B:786–792 Roaf R (1966) The basic anatomy of scoliosis. J Bone Joint Surg 48-B:786–792
18.
go back to reference Schmitz A, Jaeger UE, Koenig R, Wagner UA, Giesecke J, Schmitt O (2001) A new MRI technique for imaging scoliosis in the sagittal plane. Eur Spine J 10:114–117CrossRefPubMed Schmitz A, Jaeger UE, Koenig R, Wagner UA, Giesecke J, Schmitt O (2001) A new MRI technique for imaging scoliosis in the sagittal plane. Eur Spine J 10:114–117CrossRefPubMed
19.
go back to reference Somerville EW (1952) Rotational lordosis: the development of the single curve. J Bone Joint Surg 34-B:421–427 Somerville EW (1952) Rotational lordosis: the development of the single curve. J Bone Joint Surg 34-B:421–427
20.
go back to reference Stokes IA (1994) Three-dimensional terminology of spinal deformity: a report presented to the Scoliosis Research Society by the Scoliosis Research Society Working Group on 3-D terminology of spinal deformity. Spine 19:236–248PubMed Stokes IA (1994) Three-dimensional terminology of spinal deformity: a report presented to the Scoliosis Research Society by the Scoliosis Research Society Working Group on 3-D terminology of spinal deformity. Spine 19:236–248PubMed
21.
go back to reference Stokes IA, Spence H, Aronsson DD, Kilmer N (1996) Mechanical modulation of vertebral body growth. Spine 21:1162–1167CrossRefPubMed Stokes IA, Spence H, Aronsson DD, Kilmer N (1996) Mechanical modulation of vertebral body growth. Spine 21:1162–1167CrossRefPubMed
22.
go back to reference Torell G, Nachemson A, Haderspek-Grib K, Schultz A (1985) Standing and supine Cobb measures in girls with idiopathic scoliosis. Spine 10:425–427PubMed Torell G, Nachemson A, Haderspek-Grib K, Schultz A (1985) Standing and supine Cobb measures in girls with idiopathic scoliosis. Spine 10:425–427PubMed
23.
go back to reference Volkmann R (1862) Chirurgische erfahrungen uber knochenverbiegungen und knochenwachsthum. Virchows Arch Pathol Anat Physiol 24:512–540 Volkmann R (1862) Chirurgische erfahrungen uber knochenverbiegungen und knochenwachsthum. Virchows Arch Pathol Anat Physiol 24:512–540
24.
go back to reference Willner S (1981) Spinal pantograph—a non-invasive technique for describing kyphosis and lordosis in the thoraco-lumbar spine. Acta Orthop Scand 52:525–529PubMed Willner S (1981) Spinal pantograph—a non-invasive technique for describing kyphosis and lordosis in the thoraco-lumbar spine. Acta Orthop Scand 52:525–529PubMed
25.
go back to reference Wolff J (1986) The law of bone remodelling. Springer, London. Wolff J (1986) The law of bone remodelling. Springer, London.
Metadata
Title
Demonstration of vertebral and disc mechanical torsion in adolescent idiopathic scoliosis using three-dimensional MR imaging
Authors
Daniel Birchall
David Hughes
Barbara Gregson
Brad Williamson
Publication date
01-03-2005
Publisher
Springer-Verlag
Published in
European Spine Journal / Issue 2/2005
Print ISSN: 0940-6719
Electronic ISSN: 1432-0932
DOI
https://doi.org/10.1007/s00586-004-0705-5

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