| Literature DB >> 25834002 |
Parshia Moghadas1, Aziza Mahomed2, Duncan E T Shepherd1, David W L Hukins1.
Abstract
The Charité(®) lumbar intervertebral disc replacement was subjected to wear testing in an electro-mechanical spine simulator. Sinusoidally varying compression (0.6-2 kN, frequency 2 Hz), rotation (±2°, frequency 1 Hz), flexion-extension (6° to -3°, frequency 1 Hz) and lateral bending (±2°, frequency 1 Hz) were applied out of phase to specimens immersed in diluted calf serum at 37 °C. The mass of the ultra-high-molecular weight polyethylene component of the device was measured at intervals of 0.5, 1, 2, 3, 4 and 5 million cycles; its volume was also measured by micro-computed tomography. Total mass and volume losses were 60.3 ± 4.6 mg (mean ± standard deviation) and 64.6 ± 6.0 mm(3). Corresponding wear rates were 12.0 ± 1.4 mg per million cycles and 12.8 ± 1.2 mm(3) per million cycles; the rate of loss of volume corresponds to a mass loss of 11.9 ± 1.1 mg per million cycles, that is, the two sets of measurements of wear agree closely. Wear rates also agree closely with measurements made in another laboratory using the same protocol but using a conventional mechanical spine simulator. © IMechE 2015.Entities:
Keywords: Intervertebral disc replacement; spine simulators; ultra-high-molecular weight polyethylene; wear rates
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Year: 2015 PMID: 25834002 PMCID: PMC4456431 DOI: 10.1177/0954411915576537
Source DB: PubMed Journal: Proc Inst Mech Eng H ISSN: 0954-4119 Impact factor: 1.617
Figure 1.Attachment of a plate of the Charité® device to the spine simulator: (a) the plate (left-hand side) of the device, the main body (centre) of the fixture that is attached to the base or actuator and the lid (right-hand side); (b) the plate fitted into the recess of the body and (c) the plate secured in the recess by the lid.
Figure 2.Wear of the UHMWPE spacer of the Charité® device represented as (a) mass loss for each sample, (b) average mass loss, (c) volume loss for each sample and (d) average volume loss, as a function of the number of cycles. In both average cases, a regression line is fitted through the points (R2 = 0.99, p = 0.00) and error bars represent standard deviations. For the individual sample plots, regression lines are fitted through the points.
Results for the load soak control (Sample 1) are not shown; the behaviour of this sample is described in section ‘Results’.