Skip to main content
Erschienen in: European Spine Journal 9/2015

01.09.2015 | Original Article

Correlation between biomechanical properties of the annulus fibrosus and magnetic resonance imaging (MRI) findings

verfasst von: Zhi Shan, Shengyun Li, Junhui Liu, Maiwulanjiang Mamuti, Chongyan Wang, Fengdong Zhao

Erschienen in: European Spine Journal | Ausgabe 9/2015

Einloggen, um Zugang zu erhalten

Abstract

Purpose

To investigate the regional tensile properties of human annulus fibrosus (AF) and relate them to magnetic resonance imaging (MRI) findings.

Methods

44 human cadaveric lumbar spines were harvested (24 male, 20 female, aged 25–64 years). MRI was used to identify Pfirrmann grade of disc degeneration, and Modic changes (MCs). Intervertebral discs were then removed and dissected into five regions: nucleus pulposus, anterior AF, anterolateral AF, lateral AF, and posterolateral AF. Samples for tensile testing (1.5 mm × 1.5 mm × 5 mm) were removed from inner, middle and outer parts of each region.

Results

1969 specimens from 189 discs were stretched to failure. Average tensile stiffness (modulus) increased from 4.80 MPa in the inner AF to 13.0 MPa in the outer AF. Strength (UTS) increased similarly, from 1.18 to 3.29 MPa, whereas elongation at failure decreased, from 49 to 38 %. The only significant change with age was a reduction in UTS in the middle annulus. In contrast, severe grades of disc degeneration were associated with consistent and highly significant reductions in tensile properties. Effects were greatest in the outer AF, where stiffness and strength fell by 29 and 43 %, respectively. Modic changes also were associated with reduced stiffness and strength, but here the effects were greatest in the inner and middle AF.

Conclusion

Weakening of degenerated AF may be caused by accumulating structural defects, and enzymatic degradation. MRI has the potential to identify local weakening of the AF.
Literatur
1.
Zurück zum Zitat Adams MA, Bogduk N, Burton K, Dolan P (2013) The Biomechanics of Back Pain, 3rd edn. Churchill Livingstone, Edinburgh Adams MA, Bogduk N, Burton K, Dolan P (2013) The Biomechanics of Back Pain, 3rd edn. Churchill Livingstone, Edinburgh
2.
Zurück zum Zitat Adams MA, Green TP (1993) Tensile properties of the annulus fibrosus. I. The contribution of fibre-matrix interactions to tensile stiffness and strength. Eur Spine J 2(4):203–208CrossRefPubMed Adams MA, Green TP (1993) Tensile properties of the annulus fibrosus. I. The contribution of fibre-matrix interactions to tensile stiffness and strength. Eur Spine J 2(4):203–208CrossRefPubMed
4.
Zurück zum Zitat Skaggs DL, Weidenbaum M, Iatridis JC, Ratcliffe A, Mow VC (1994) Regional variation in tensile properties and biochemical composition of the human lumbar anulus fibrosus. Spine (Phila Pa 1976) 19(12):1310–1319CrossRef Skaggs DL, Weidenbaum M, Iatridis JC, Ratcliffe A, Mow VC (1994) Regional variation in tensile properties and biochemical composition of the human lumbar anulus fibrosus. Spine (Phila Pa 1976) 19(12):1310–1319CrossRef
5.
Zurück zum Zitat Umehara S, Tadano S, Abumi K, Katagiri K, Kaneda K, Ukai T (1996) Effects of degeneration on the elastic modulus distribution in the lumbar intervertebral disc. Spine (Phila Pa 1976) 21(7):811–819CrossRef Umehara S, Tadano S, Abumi K, Katagiri K, Kaneda K, Ukai T (1996) Effects of degeneration on the elastic modulus distribution in the lumbar intervertebral disc. Spine (Phila Pa 1976) 21(7):811–819CrossRef
6.
Zurück zum Zitat Skrzypiec D, Tarala M, Pollintine P, Dolan P, Adams M (2007) When are intervertebral discs stronger than their adjacent vertebrae? Spine (Phila Pa 1976) 32(22):2455–2461CrossRef Skrzypiec D, Tarala M, Pollintine P, Dolan P, Adams M (2007) When are intervertebral discs stronger than their adjacent vertebrae? Spine (Phila Pa 1976) 32(22):2455–2461CrossRef
7.
Zurück zum Zitat Eyre DR, Muir H (1977) Quantitative analysis of types I and II collagens in human intervertebral discs at various ages. Biochim Biophys Acta 492(1):29–42CrossRefPubMed Eyre DR, Muir H (1977) Quantitative analysis of types I and II collagens in human intervertebral discs at various ages. Biochim Biophys Acta 492(1):29–42CrossRefPubMed
12.
Zurück zum Zitat DeGroot J, Verzijl N, Wenting-van Wijk MJ, Jacobs KM, Van El B, Van Roermund PM, Bank RA, Bijlsma JW, TeKoppele JM, Lafeber FP (2004) Accumulation of advanced glycation end products as a molecular mechanism for aging as a risk factor in osteoarthritis. Arthritis Rheum 50(4):1207–1215. doi:10.1002/art.20170 CrossRefPubMed DeGroot J, Verzijl N, Wenting-van Wijk MJ, Jacobs KM, Van El B, Van Roermund PM, Bank RA, Bijlsma JW, TeKoppele JM, Lafeber FP (2004) Accumulation of advanced glycation end products as a molecular mechanism for aging as a risk factor in osteoarthritis. Arthritis Rheum 50(4):1207–1215. doi:10.​1002/​art.​20170 CrossRefPubMed
13.
Zurück zum Zitat Kawchuk G, Kaigle Holm A, Ekström L, Hansson T, Holm S (2009) Bulging of the inner and outer annulus during in vivo axial loading of normal and degenerated discs. J Spinal Disord Tech 22(3):214–218CrossRefPubMed Kawchuk G, Kaigle Holm A, Ekström L, Hansson T, Holm S (2009) Bulging of the inner and outer annulus during in vivo axial loading of normal and degenerated discs. J Spinal Disord Tech 22(3):214–218CrossRefPubMed
14.
Zurück zum Zitat Antoniou J, Steffen T, Nelson F, Winterbottom N, Hollander AP, Poole RA, Aebi M, Alini M (1996) The human lumbar intervertebral disc: evidence for changes in the biosynthesis and denaturation of the extracellular matrix with growth, maturation, ageing, and degeneration. J Clin Invest 98(4):996–1003. doi:10.1172/jci118884 PubMedCentralCrossRefPubMed Antoniou J, Steffen T, Nelson F, Winterbottom N, Hollander AP, Poole RA, Aebi M, Alini M (1996) The human lumbar intervertebral disc: evidence for changes in the biosynthesis and denaturation of the extracellular matrix with growth, maturation, ageing, and degeneration. J Clin Invest 98(4):996–1003. doi:10.​1172/​jci118884 PubMedCentralCrossRefPubMed
16.
Zurück zum Zitat Pfirrmann C, Metzdorf A, Zanetti M, Hodler J, Boos N (2001) Magnetic resonance classification of lumbar intervertebral disc degeneration. Spine (Phila Pa 1976) 26(17):1873–1878CrossRef Pfirrmann C, Metzdorf A, Zanetti M, Hodler J, Boos N (2001) Magnetic resonance classification of lumbar intervertebral disc degeneration. Spine (Phila Pa 1976) 26(17):1873–1878CrossRef
17.
Zurück zum Zitat Modic MT, Steinberg PM, Ross JS, Masaryk TJ, Carter JR (1988) Degenerative disk disease: assessment of changes in vertebral body marrow with MR imaging. Radiology 166(1 PT 1):193–199CrossRefPubMed Modic MT, Steinberg PM, Ross JS, Masaryk TJ, Carter JR (1988) Degenerative disk disease: assessment of changes in vertebral body marrow with MR imaging. Radiology 166(1 PT 1):193–199CrossRefPubMed
19.
Zurück zum Zitat Bendix T, Sorensen JS, Henriksson GA, Bolstad JE, Narvestad EK, Jensen TS (2012) Lumbar modic changes-a comparison between findings at low- and high-field magnetic resonance imaging. Spine (Phila Pa 1976) 37(20):1756–1762. doi:10.1097/BRS.0b013e318257ffce CrossRef Bendix T, Sorensen JS, Henriksson GA, Bolstad JE, Narvestad EK, Jensen TS (2012) Lumbar modic changes-a comparison between findings at low- and high-field magnetic resonance imaging. Spine (Phila Pa 1976) 37(20):1756–1762. doi:10.​1097/​BRS.​0b013e318257ffce​ CrossRef
20.
Zurück zum Zitat Ebara S, Iatridis J, Setton L, Foster R, Mow V, Weidenbaum M (1996) Tensile properties of nondegenerate human lumbar anulus fibrosus. Spine (Phila Pa 1976) 21(4):452–461CrossRef Ebara S, Iatridis J, Setton L, Foster R, Mow V, Weidenbaum M (1996) Tensile properties of nondegenerate human lumbar anulus fibrosus. Spine (Phila Pa 1976) 21(4):452–461CrossRef
21.
Zurück zum Zitat Elliott DM, Setton LA (2001) Anisotropic and inhomogeneous tensile behavior of the human anulus fibrosus: experimental measurement and material model predictions. J Biomech Eng 123(3):256–263CrossRefPubMed Elliott DM, Setton LA (2001) Anisotropic and inhomogeneous tensile behavior of the human anulus fibrosus: experimental measurement and material model predictions. J Biomech Eng 123(3):256–263CrossRefPubMed
22.
Zurück zum Zitat Acaroglu ER, Iatridis JC, Setton LA, Foster RJ, Mow VC, Weidenbaum M (1995) Degeneration and aging affect the tensile behavior of human lumbar anulus fibrosus. Spine (Phila Pa 1976) 20(24):2690–2701CrossRef Acaroglu ER, Iatridis JC, Setton LA, Foster RJ, Mow VC, Weidenbaum M (1995) Degeneration and aging affect the tensile behavior of human lumbar anulus fibrosus. Spine (Phila Pa 1976) 20(24):2690–2701CrossRef
23.
Zurück zum Zitat Sivan SS, Wachtel E, Tsitron E, Sakkee N, van der Ham F, Degroot J, Roberts S, Maroudas A (2008) Collagen turnover in normal and degenerate human intervertebral discs as determined by the racemization of aspartic acid. J Biol Chem 283(14):8796–8801. doi:10.1074/jbc.M709885200 CrossRefPubMed Sivan SS, Wachtel E, Tsitron E, Sakkee N, van der Ham F, Degroot J, Roberts S, Maroudas A (2008) Collagen turnover in normal and degenerate human intervertebral discs as determined by the racemization of aspartic acid. J Biol Chem 283(14):8796–8801. doi:10.​1074/​jbc.​M709885200 CrossRefPubMed
24.
25.
Zurück zum Zitat Dolan P, Luo J, Pollintine P, Landham PR, Stefanakis M, Adams MA (2013) Intervertebral disc decompression following endplate damage: implications for disc degeneration depend on spinal level and age. Spine (Phila Pa 1976) 38(17):1473–1481. doi:10.1097/BRS.0b013e318290f3cc CrossRef Dolan P, Luo J, Pollintine P, Landham PR, Stefanakis M, Adams MA (2013) Intervertebral disc decompression following endplate damage: implications for disc degeneration depend on spinal level and age. Spine (Phila Pa 1976) 38(17):1473–1481. doi:10.​1097/​BRS.​0b013e318290f3cc​ CrossRef
Metadaten
Titel
Correlation between biomechanical properties of the annulus fibrosus and magnetic resonance imaging (MRI) findings
verfasst von
Zhi Shan
Shengyun Li
Junhui Liu
Maiwulanjiang Mamuti
Chongyan Wang
Fengdong Zhao
Publikationsdatum
01.09.2015
Verlag
Springer Berlin Heidelberg
Erschienen in
European Spine Journal / Ausgabe 9/2015
Print ISSN: 0940-6719
Elektronische ISSN: 1432-0932
DOI
https://doi.org/10.1007/s00586-015-4061-4

Weitere Artikel der Ausgabe 9/2015

European Spine Journal 9/2015 Zur Ausgabe

Arthropedia

Grundlagenwissen der Arthroskopie und Gelenkchirurgie. Erweitert durch Fallbeispiele, Videos und Abbildungen. 
» Jetzt entdecken

Update Orthopädie und Unfallchirurgie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.