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Journal Article

Contribution of Shape Features to Intradiscal Pressure and Facets Contact Pressure in L4/L5 FSUs: An In-Silico Study

Amin Kassab-Bachi; Nishant Ravikumar; Ruth K. Wilcox; Alejandro F. Frangi; Zeike A. Taylor
Annals of Biomedical Engineering · Vol. 51, Issue 1 · pp. 174-188 · 2023

Abstract

Finite element models (FEMs) of the spine commonly use a limited number of simplified geometries. Nevertheless, the geometric features of the spine are important in determining its FEM outcomes. The link between a spinal segment’s shape and its biomechanical response has been studied, but the co-variances of the shape features have been omitted. We used a principal component (PCA)-based statistical shape modelling (SSM) approach to investigate the contribution of shape features to the intradiscal pressure (IDP) and the facets contact pressure (FCP) in a cohort of synthetic L4/L5 functional spinal units under axial compression. We quantified the uncertainty in the FEM results, and the contribution of individual shape modes to these results. This parameterisation approach is able to capture the variability in the correlated anatomical features in a real population and sample plausible synthetic geometries. The first shape mode ( $$\phi _1$$ ϕ 1 ) explained 22.6% of the shape variation in the subject-specific cohort used to train the SSM, and had the largest correlation with, and contribution to IDP (17%) and FCP (11%). The largest geometric variation in ( $$\phi _1$$ ϕ 1 ) was in the annulus-nucleus ratio.

Bibliographic Information

JournalAnnals of Biomedical Engineering
PublisherSpringer
Publication Date2023-01-01
Publication Year2023
Volume51
Issue1
Pages174-188
Document TypeJournal Article
Print ISSN0090-6964
eISSN1573-9686
DOI10.1007/s10439-022-03072-2

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NARA Access Coverage1972-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10439
Publisher PageOpen Publisher Page
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