Biomechanical models to study spinal phenotypes Book Section


Authors: Bartelstein, M. K.; Vig, K. S.; Long, R. G.; Hecht, A. C.; Iatridis, J. C.
Editors: Samartzis, D.; Karppinen, J. I.; Williams, F. M. K.
Article/Chapter Title: Biomechanical models to study spinal phenotypes
Abstract: Spinal phenotypes commonly involve degenerative changes to the intervertebral disc (IVD). This chapter describes biomechanical and biological changes that result from injuries that simulate the annulus-driven and endplate-driven clinical IVD degeneration phenotypes recognized in the literature. These models include ex vivo biomechanical studies, finite element modeling, IVD cell, and organ culture studies. The model systems serve to identify the biomechanical and biological effects of needle puncture injuries, incisions in the annulus fibrosus, nucleotomy, and simulation of endplate fracture. This chapter highlights the research strategies for the IVD focused on injury models that mirror distinct clinical phenotypes and that can directly inform these clinical phenotypes. © 2022 Elsevier Inc. All rights reserved.
Keywords: models; biomechanics; phenotypes; degeneration; drivers; disc; ivd; annulus-driven; endplate-driven; finite element modeling
Book Title: Spine Phenotypes
ISBN: 978-0-12-822778-7
Publisher: Academic Press  
Publication Place: London, United Kingdom
Date Published: 2022-01-01
Start Page: 47
End Page: 66
Language: English
DOI: 10.1016/b978-0-12-822778-7.00010-9
PROVIDER: scopus
DOI/URL:
Notes: Book Chapter: 3 -- Export Date: 3 January 2023 -- Source: Scopus
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