• Title of article

    A new method to measure the polymerization shrinkage kinetics of composites using a particle tracking method with computer vision

  • Author/Authors

    Lee، نويسنده , , In-Bog and Min، نويسنده , , Sun-Hong and Seo، نويسنده , , Deog-Gyu، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    7
  • From page
    212
  • To page
    218
  • Abstract
    Objectives m of this study was to develop a new method to measure the polymerization shrinkage of light cured composites and to evaluate the overall utility and significance of the technique. s ical instrument to measure the linear polymerization shrinkage of composites without directly contacting the specimen was developed using a particle tracking method with computer vision. The measurement system consisted of a CCD color video camera, a lens, an image storage device, and image processing and analysis software. The shrinkage kinetics of a commercial silorane-based composite (P90) and two conventional methacrylate-based composites (Z250 and a flowable Z350) were investigated and compared with the data measured using the “bonded disc method”. s near shrinkage of the composites was 0.33–1.41%. The shrinkage value was lowest for the silorane-based (P90) composite and highest for the flowable Z350 composite. The estimated volume shrinkages of the materials were comparable to the axial shrinkages measured with the bonded disc method. icance w instrument was able to measure the true linear shrinkage of composites without sensitivity to the specimen geometry and the viscosity of the material. Therefore, this instrument can be used to characterize the shrinkage kinetics for a wide range of commercial and experimental visible-light-cure materials in relation to the composition and chemistry.
  • Keywords
    Silorane , Computer vision , Polymerization shrinkage , Composites , Particle tracking
  • Journal title
    Dental Materials
  • Serial Year
    2012
  • Journal title
    Dental Materials
  • Record number

    2317889