An ex vivo exothermal and mechanical evaluation of two-solution bone cements in vertebroplasty.
Publication/Presentation Date
5-1-2011
Abstract
BACKGROUND CONTEXT: Previous ex vivo studies showed that the properties of commercial cements modified for use in vertebroplasty are not optimal and are associated with several drawbacks, including high exothermic reaction, low cement viscosity and consequent extravasation, and unpredictable wait time after cement preparation. Additionally, strength and stiffness restoration are controversial varying with the cement type, volume injected, and technique used.
PURPOSE: To investigate maximum polymerization temperatures and mechanical performance of novel two-solution bone cement (TSBC) modified by the addition of cross-linked poly(methyl methacrylate) nanospheres (η-TSBC) and microspheres (μ-TSBC) in a cadaver vertebroplasty model in comparison to a commercially available cement (KyphX). To study the viability of application of these novel cement formulations in the treatment of vertebral compression fractures.
STUDY DESIGN/SETTING: Ex vivo biomechanical and exothermal evaluation of TSBCs using cadaveric vertebral bodies (VBs).
METHODS: Thirty-one cadaveric vertebrae (age, 74±2 years; T score, -1.5±0.5) were disarticulated. Thirteen vertebrae were assigned into three groups and instrumented with thermocouples positioned midbody along the intersection of the midsagittal and midcoronal axes, as well as along the intersection of the midsagittal axis and posterior VB wall. After equilibration at 37°C, 5 mL of cement was injected and temperatures were recorded for 1 hour. The groups were injected with η-TSBC, μ-TSBC, or KyphX. The remaining 18 vertebrae were biomechanically tested. After randomization into three groups, each specimen was fractured in compression and stabilized with 5 mL of each cement type. Each specimen was then retested in axial compression.
RESULTS: Temperatures in the central region of the vertebrae were significantly lower (p.05) of the three groups. There was no significant difference between the average values of stiffness among the cements (p>.05), however there was a significant difference between intact and treated stiffness (p<.05).
CONCLUSIONS: The TSBC cements decreased the local temperature within the VB while providing similar mechanical strength when compared with vertebrae treated with KyphX.
Volume
11
Issue
5
First Page
432
Last Page
439
ISSN
1878-1632
Published In/Presented At
Rodrigues, D. C., Ordway, N. R., Ma, C. R., Fayyazi, A. H., & Hasenwinkel, J. M. (2011). An ex vivo exothermal and mechanical evaluation of two-solution bone cements in vertebroplasty. The spine journal : official journal of the North American Spine Society, 11(5), 432–439. https://doi.org/10.1016/j.spinee.2011.02.012
Disciplines
Medicine and Health Sciences
PubMedID
21481652
Department(s)
Department of Surgery
Document Type
Article