Skip to main content
Erschienen in: European Spine Journal 4/2014

01.04.2014 | Original Article

Quantification of continuous in vivo flexion–extension kinematics and intervertebral strains

verfasst von: Tina M. Nagel, Jared L. Zitnay, Victor H. Barocas, David J. Nuckley

Erschienen in: European Spine Journal | Ausgabe 4/2014

Einloggen, um Zugang zu erhalten

Abstract

Purpose

Healthy subjects performed lumbar flexion and were assessed by video fluoroscopy to measure the in vivo kinematics of the lower lumbar motion segments.

Methods

Fifteen healthy subjects (8 male, 7 female, 28 ± 10 years) performed lumbar flexion and extension back to neutral while their vertebrae were imaged. The sagittal plane vertebral margins of L3–S1 were identified. Lumbar angle, segmental margin strains, axial displacements, anterior–posterior (A–P) translations, and segmental rotations over the course of flexion were measured.

Results

L4–L5 had the largest posterior margin Green strain (65 %). Each segment displayed more axial displacement than A–P translation. Peak vertebral angulation occurred at approximately 75 % of peak flexion during the extension phase.

Conclusion

L4–L5 exhibited the largest anterior and posterior margin strains (29 and 65 %, respectively). Strains in the disc during in vivo lumbar flexion are due to both angular rotation and linear translation.
Literatur
2.
3.
Zurück zum Zitat Nachemson ALFL, Schultz AB, Berkson MH (1979) Mechanical properties of human lumbar spine motion segments: influences of age, sex, disc level, and degeneration. Spine 4:1–4. doi:10.1097/00007632-197901000-00001 Nachemson ALFL, Schultz AB, Berkson MH (1979) Mechanical properties of human lumbar spine motion segments: influences of age, sex, disc level, and degeneration. Spine 4:1–4. doi:10.​1097/​00007632-197901000-00001
4.
Zurück zum Zitat Skaggs DL, Weidenbaum M, Latridis JC et al (1994) Regional variation in tensile properties and biochemical composition of the human lumbar anulus fibrosus. Spine 19:1310–1319. doi:10.1097/00007632-199406000-00002 Skaggs DL, Weidenbaum M, Latridis JC et al (1994) Regional variation in tensile properties and biochemical composition of the human lumbar anulus fibrosus. Spine 19:1310–1319. doi:10.​1097/​00007632-199406000-00002
7.
Zurück zum Zitat Fujita Y, Duncan NA, Lotz JC (1997) Radial tensile properties of the lumbar annulus fibrosus are site and degeneration dependent. J Orthop Res Off Publ Orthop Res Soc 15:814–819. doi:10.1002/jor.1100150605 CrossRef Fujita Y, Duncan NA, Lotz JC (1997) Radial tensile properties of the lumbar annulus fibrosus are site and degeneration dependent. J Orthop Res Off Publ Orthop Res Soc 15:814–819. doi:10.​1002/​jor.​1100150605 CrossRef
8.
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 123:256. doi:10.1115/1.1374202 PubMedCrossRef Elliott DM, Setton LA (2001) Anisotropic and Inhomogeneous tensile behavior of the human anulus fibrosus: experimental measurement and material model predictions. J Biomech Eng 123:256. doi:10.​1115/​1.​1374202 PubMedCrossRef
14.
Zurück zum Zitat Gatton ML, Pearcy MJ (1999) Kinematics and movement sequencing during flexion of the lumbar spine. Clin Biomech 14:376–383. Bristol, AvonCrossRef Gatton ML, Pearcy MJ (1999) Kinematics and movement sequencing during flexion of the lumbar spine. Clin Biomech 14:376–383. Bristol, AvonCrossRef
17.
Zurück zum Zitat Kaigle AM, Wessberg P, Hansson TH (1998) Muscular and kinematic behavior of the lumbar spine during flexion–extension. J Spinal Disord 11:163–174PubMed Kaigle AM, Wessberg P, Hansson TH (1998) Muscular and kinematic behavior of the lumbar spine during flexion–extension. J Spinal Disord 11:163–174PubMed
20.
Zurück zum Zitat Okawa A, Shinomiya K, Komori H et al (1998) Dynamic motion study of the whole lumbar spine by videofluoroscopy. Spine 23:1743–1749PubMedCrossRef Okawa A, Shinomiya K, Komori H et al (1998) Dynamic motion study of the whole lumbar spine by videofluoroscopy. Spine 23:1743–1749PubMedCrossRef
24.
Zurück zum Zitat O’Connell GD, Vresilovic EJ, Elliott DM (2011) Human intervertebral disc internal strain in compression: the effect of disc region, loading position, and degeneration. J Orthop Res Off Publ Orthop Res Soc 29:547–555. doi:10.1002/jor.21232 CrossRef O’Connell GD, Vresilovic EJ, Elliott DM (2011) Human intervertebral disc internal strain in compression: the effect of disc region, loading position, and degeneration. J Orthop Res Off Publ Orthop Res Soc 29:547–555. doi:10.​1002/​jor.​21232 CrossRef
25.
Zurück zum Zitat Pearcy MJ, Tibrewal SB (1984) Lumbar intervertebral disc and ligament deformations measured in vivo. Clin Orthop Relat Res 191:281–286 Pearcy MJ, Tibrewal SB (1984) Lumbar intervertebral disc and ligament deformations measured in vivo. Clin Orthop Relat Res 191:281–286
26.
Zurück zum Zitat O’Connell GD, Johannessen W, Vresilovic EJ, Elliott DM (2007) Human internal disc strains in axial compression measured noninvasively using magnetic resonance imaging. Spine 32:2860–2868. doi:10.1097/BRS.0b013e31815b75fb O’Connell GD, Johannessen W, Vresilovic EJ, Elliott DM (2007) Human internal disc strains in axial compression measured noninvasively using magnetic resonance imaging. Spine 32:2860–2868. doi:10.​1097/​BRS.​0b013e31815b75fb​
27.
Zurück zum Zitat Michalek AJ, Gardner-Morse MG, Iatridis JC (2012) Large residual strains are present in the intervertebral disc annulus fibrosus in the unloaded state. J Biomech 45:1227–1231PubMedCentralPubMedCrossRef Michalek AJ, Gardner-Morse MG, Iatridis JC (2012) Large residual strains are present in the intervertebral disc annulus fibrosus in the unloaded state. J Biomech 45:1227–1231PubMedCentralPubMedCrossRef
28.
Zurück zum Zitat Adams MA, Hutton WC (1986) Has the lumbar spine a margin of safety in forward bending? Clin Biomech 1:3–6CrossRef Adams MA, Hutton WC (1986) Has the lumbar spine a margin of safety in forward bending? Clin Biomech 1:3–6CrossRef
29.
Zurück zum Zitat Lin HS, Liu YK, Adams KH (1978) Mechanical response of the lumbar intervertebral joint under physiological (complex) loading. J Bone Joint Surg Am 60:41–55PubMed Lin HS, Liu YK, Adams KH (1978) Mechanical response of the lumbar intervertebral joint under physiological (complex) loading. J Bone Joint Surg Am 60:41–55PubMed
Metadaten
Titel
Quantification of continuous in vivo flexion–extension kinematics and intervertebral strains
verfasst von
Tina M. Nagel
Jared L. Zitnay
Victor H. Barocas
David J. Nuckley
Publikationsdatum
01.04.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
European Spine Journal / Ausgabe 4/2014
Print ISSN: 0940-6719
Elektronische ISSN: 1432-0932
DOI
https://doi.org/10.1007/s00586-014-3195-0

Weitere Artikel der Ausgabe 4/2014

European Spine Journal 4/2014 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.