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Biomechanics of L5/S1 in Long Thoracolumbosacral Constructs: A Cadaveric Study

STUDY DESIGN: In vitro cadaveric biomechanical study. OBJECTIVES: Despite numerous techniques employed to establish solid lumbosacral fixation, there are little biomechanical data correlating fixation methods at L5/S1 to thoracolumbosacral (TLS) construct length. We aimed to determine the optimal co...

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Autores principales: Lee, Bryan S., Walsh, Kevin M., Healy, Andrew T., Colbrunn, Robb, Butler, Robert S., Goodwin, Ryan C., Steinmetz, Michael P., Mroz, Thomas E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6125936/
https://www.ncbi.nlm.nih.gov/pubmed/30202715
http://dx.doi.org/10.1177/2192568218759037
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author Lee, Bryan S.
Walsh, Kevin M.
Healy, Andrew T.
Colbrunn, Robb
Butler, Robert S.
Goodwin, Ryan C.
Steinmetz, Michael P.
Mroz, Thomas E.
author_facet Lee, Bryan S.
Walsh, Kevin M.
Healy, Andrew T.
Colbrunn, Robb
Butler, Robert S.
Goodwin, Ryan C.
Steinmetz, Michael P.
Mroz, Thomas E.
author_sort Lee, Bryan S.
collection PubMed
description STUDY DESIGN: In vitro cadaveric biomechanical study. OBJECTIVES: Despite numerous techniques employed to establish solid lumbosacral fixation, there are little biomechanical data correlating fixation methods at L5/S1 to thoracolumbosacral (TLS) construct length. We aimed to determine the optimal construct with the hypothesis that under physiological loads, lumbosacral constructs can be stabilized by L5/S1 anterior lumbar interbody fusion (ALIF) alone, without iliac screw fixation (ISF), and that TLS constructs would require ISF, with or without ALIF. METHODS: By using a robot capable of motion in 6 axes, force-moment sensor, motion-tracking camera system and software, we simulated the spinal loading effects in flexion-extension, axial rotation, and lateral bending, and compared torques in different construct groups of T4-S1, T10-S1, and L2-S1. By conducting multidirectional flexibility testing we assessed the effects of constructs of various lengths on the L5/S1 segment. RESULTS: L2-S1 constructs may be equivalently stabilized by L5/S1 ALIF alone without ISF. Longer TLS constructs exerted increasing motion at L5/S1, exhibiting trends in favor of ISF when extending to T10 and statistically improved fixation when extending to T4. Lastly, TLS constructs with ISF exhibited a statistically significant reduction in L5-S1 range of motion from the addition of ALIF when extending to T4-pelvis but not T10-pelvis. CONCLUSIONS: We found that ALIF alone may sufficiently support the L2-S1 construct, reducing L5/S1 range of motion and transmitting loads instead to the sacropelvis. Furthermore, ALIF was found to add significant stability to the T4-pelvis construct when added to ISF. This difference was not significant for the T10-pelvis construct.
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spelling pubmed-61259362018-09-10 Biomechanics of L5/S1 in Long Thoracolumbosacral Constructs: A Cadaveric Study Lee, Bryan S. Walsh, Kevin M. Healy, Andrew T. Colbrunn, Robb Butler, Robert S. Goodwin, Ryan C. Steinmetz, Michael P. Mroz, Thomas E. Global Spine J Original Articles STUDY DESIGN: In vitro cadaveric biomechanical study. OBJECTIVES: Despite numerous techniques employed to establish solid lumbosacral fixation, there are little biomechanical data correlating fixation methods at L5/S1 to thoracolumbosacral (TLS) construct length. We aimed to determine the optimal construct with the hypothesis that under physiological loads, lumbosacral constructs can be stabilized by L5/S1 anterior lumbar interbody fusion (ALIF) alone, without iliac screw fixation (ISF), and that TLS constructs would require ISF, with or without ALIF. METHODS: By using a robot capable of motion in 6 axes, force-moment sensor, motion-tracking camera system and software, we simulated the spinal loading effects in flexion-extension, axial rotation, and lateral bending, and compared torques in different construct groups of T4-S1, T10-S1, and L2-S1. By conducting multidirectional flexibility testing we assessed the effects of constructs of various lengths on the L5/S1 segment. RESULTS: L2-S1 constructs may be equivalently stabilized by L5/S1 ALIF alone without ISF. Longer TLS constructs exerted increasing motion at L5/S1, exhibiting trends in favor of ISF when extending to T10 and statistically improved fixation when extending to T4. Lastly, TLS constructs with ISF exhibited a statistically significant reduction in L5-S1 range of motion from the addition of ALIF when extending to T4-pelvis but not T10-pelvis. CONCLUSIONS: We found that ALIF alone may sufficiently support the L2-S1 construct, reducing L5/S1 range of motion and transmitting loads instead to the sacropelvis. Furthermore, ALIF was found to add significant stability to the T4-pelvis construct when added to ISF. This difference was not significant for the T10-pelvis construct. SAGE Publications 2018-03-20 2018-09 /pmc/articles/PMC6125936/ /pubmed/30202715 http://dx.doi.org/10.1177/2192568218759037 Text en © The Author(s) 2018 http://creativecommons.org/licenses/by-nc-nd/4.0/ This article is distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs 4.0 License (http://www.creativecommons.org/licenses/by-nc-nd/4.0/) which permits non-commercial use, reproduction and distribution of the work as published without adaptation or alteration, without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Original Articles
Lee, Bryan S.
Walsh, Kevin M.
Healy, Andrew T.
Colbrunn, Robb
Butler, Robert S.
Goodwin, Ryan C.
Steinmetz, Michael P.
Mroz, Thomas E.
Biomechanics of L5/S1 in Long Thoracolumbosacral Constructs: A Cadaveric Study
title Biomechanics of L5/S1 in Long Thoracolumbosacral Constructs: A Cadaveric Study
title_full Biomechanics of L5/S1 in Long Thoracolumbosacral Constructs: A Cadaveric Study
title_fullStr Biomechanics of L5/S1 in Long Thoracolumbosacral Constructs: A Cadaveric Study
title_full_unstemmed Biomechanics of L5/S1 in Long Thoracolumbosacral Constructs: A Cadaveric Study
title_short Biomechanics of L5/S1 in Long Thoracolumbosacral Constructs: A Cadaveric Study
title_sort biomechanics of l5/s1 in long thoracolumbosacral constructs: a cadaveric study
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6125936/
https://www.ncbi.nlm.nih.gov/pubmed/30202715
http://dx.doi.org/10.1177/2192568218759037
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