Literature DB >> 12163315

The internal mechanics of the intervertebral disc under cyclic loading.

P E Riches1, N Dhillon, J Lotz, A W Woods, D S McNally.   

Abstract

The mechanics of the intervertebral disc (IVD) under cyclic loading are investigated via a one-dimensional poroelastic model and experiment. The poroelastic model, based on that of Biot (J. Appl. Phys. 12 (1941) 155; J. Appl. Mech. 23 (1956) 91), includes a power-law relation between porosity and permeability, and a linear relation between the osmotic potential and solidity. The model was fitted to experimental data of the unconfined IVD undergoing 5 cyclic loads of 20 min compression by an applied stress of 1MPa, followed by 40 min expansion. To obtain a good agreement between experiment and theory, the initial elastic deformation of the IVD, possibly associated with the bulging of the IVD into the vertebral bodies or laterally, was removed from the experimental data. Many combinations of the permeability-porosity relationship with the initial osmotic potential (pi(i)) were investigated, and the best-fit parameters for the aggregate modulus (H(A)) and initial permeability (k(i)) were determined. The values of H(A) and k(i) were compared to literature values, and agreed well especially in the context of the adopted high-stress testing regime, and the strain related permeability in the model.

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Year:  2002        PMID: 12163315     DOI: 10.1016/s0021-9290(02)00070-2

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  11 in total

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2.  The immediate effect of repeated loading on the compressive strength of young porcine lumbar spine.

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4.  Axial creep loading and unloaded recovery of the human intervertebral disc and the effect of degeneration.

Authors:  Grace D O'Connell; Nathan T Jacobs; Sounok Sen; Edward J Vresilovic; Dawn M Elliott
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5.  Refinement of elastic, poroelastic, and osmotic tissue properties of intervertebral disks to analyze behavior in compression.

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6.  Human disc nucleus properties and vertebral endplate permeability.

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8.  Matrisome Profiling During Intervertebral Disc Development And Ageing.

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9.  Static axial overloading primes lumbar caprine intervertebral discs for posterior herniation.

Authors:  Cornelis P L Paul; Magda de Graaf; Arno Bisschop; Roderick M Holewijn; Peter M van de Ven; Barend J van Royen; Margriet G Mullender; Theodoor H Smit; Marco N Helder
Journal:  PLoS One       Date:  2017-04-06       Impact factor: 3.240

10.  Interlamellar matrix governs human annulus fibrosus multiaxial behavior.

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Journal:  Sci Rep       Date:  2020-11-09       Impact factor: 4.379

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