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      Characterization of synthetic foam structures used to manufacture artificial vertebral trabecular bone.

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          Abstract

          Artificial materials reflecting the mechanical properties of human bone are essential for valid and reliable implant testing and design. They also are of great benefit for realistic simulation of surgical procedures. The objective of this study was therefore to characterize two groups of self-developed synthetic foam structures by static compressive testing and by microcomputed tomography. Two mineral fillers and varying amounts of a blowing agent were used to create different expansion behavior of the synthetic open-cell foams. The resulting compressive and morphometric properties thus differed within and also slightly between both groups. Apart from the structural anisotropy, the compressive and morphometric properties of the synthetic foam materials were shown to mirror the respective characteristics of human vertebral trabecular bone in good approximation. In conclusion, the artificial materials created can be used to manufacture valid synthetic bones for surgical training. Further, they provide novel possibilities for studying the relationship between trabecular bone microstructure and biomechanical properties.

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          Author and article information

          Journal
          Mater Sci Eng C Mater Biol Appl
          Materials science & engineering. C, Materials for biological applications
          Elsevier BV
          1873-0191
          0928-4931
          Jul 01 2017
          : 76
          Affiliations
          [1 ] Research Group for Surgical Simulators Linz, Upper Austria University of Applied Sciences, Linz, Austria. Electronic address: david.fuerst@fh-linz.at.
          [2 ] Computed Tomography Research Group, Upper Austria University of Applied Sciences, Wels, Austria.
          [3 ] Research Group for Surgical Simulators Linz, Upper Austria University of Applied Sciences, Linz, Austria.
          [4 ] Institute of Biomechanics, Berufsgenossenschaftliche Unfallklinik Murnau and Paracelsus Medical University, Murnau, Germany; Institute of Anatomy, Paracelsus Medical University of Salzburg & Nuremberg, Salzburg, Austria.
          [5 ] Institute of Anatomy, Paracelsus Private Medical University of Salzburg, Salzburg, Austria; Institute of Anatomy, Paracelsus Medical University - Campus Nuremberg, Nuremberg, Austria.
          [6 ] Research Group for Surgical Simulators Linz, Upper Austria University of Applied Sciences, Linz, Austria. Electronic address: http://ressl.fh-linz.at.
          Article
          S0928-4931(16)32096-3
          10.1016/j.msec.2017.03.158
          28482474
          04e0e9b6-455e-4986-a3df-82f18c52b3c7
          History

          Compressive properties,Morphometry,Synthetic foam sample,Vertebral trabecular bone

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