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The Role of Cement Viscosity on Cement-Bone Apposition and Strength. An In Vitro Model with Medullary Bleeding

  • Mark A. Miller
  • , Amos Race
  • , Sameer Gupta
  • , Paul Higham
  • , Michael T. Clarke
  • , Kenneth A. Mann
  • SUNY Upstate Medical University
  • Stryker Corporation

Research output: Contribution to journalArticlepeer-review

31 Scopus citations

Abstract

We compared the mechanical and morphological characteristics of cement-bone structures created with either standard-or low-viscosity cement using a human cadaver model that simulated intramedullary bleeding. The goal is to determine if the viscosity of the cement would affect the strength of the cement-bone interface and the degree of apposition between the cement and bone. The tensile strength of cement-bone constructs with standard-viscosity cement (2.42 ± 1.55 MPa) was 21% stronger than with low-viscosity cement (2.00 ± 1.51 MPa, P = .034). Cement-bone apposition was positively correlated (r2 = 0.29, P <. 0001) with the strength of the interface. There was 15% greater apposition between cement and bone (P = .036) for standard-viscosity cement. Low-viscosity cement may be less effective in displacing bone marrow and in preventing hemodynamic backflow, resulting in less apposition and a weaker interface.

Original languageEnglish
Pages (from-to)109-116
Number of pages8
JournalJournal of Arthroplasty
Volume22
Issue number1
DOIs
StatePublished - Jan 2007

Keywords

  • bleeding
  • bone-cement
  • interface gaps
  • total hip arthroplasty
  • viscosity

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