VPP – State Research Program
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Ilze Oshina, Janis Spigulis, “Image processing for snapshot RGB mapping of skin chromophores”, Conference IONS Karlsruhe 2015, 26-29 June 2015. Poster session.

Publications

Janis Spigulis, Ilze Oshina, “3×3 T echnique for RGB Snapshot Mapping of Skin C hromophores “(online publication:10.1364/BODA.2015.JT3A.39), Bio-Optics: Design and Application 2015, Vancouver Canada, 12–15 April 2015. ISBN: 978-1-55752-954-1

Jacob Bauer, Ville Heikkinen, Janis Spigulis “Spectral reflectance estimation with an optical non contact device for skin assessment”, Northern Optics & Photonics 2015 (NOP 2015), 2-4 June 2015, Lappeenranta, Finland.

Ilze Oshina, Janis Spigulis, “Snapshot mapping of skin chromophores at triple-wavelength illumination” , 11th International Young Scientist Conference, Developments in Optics and Communications 2015, Latvia, April 8-10, 2015.

Gatis Tunens, Inga Saknite, Janis Spigulis, “Modeling diffuse reflectance spectrum of skin in the near-infrared spectral range by Monte Carlo simulations”, 11th International Young Scientist Conference, Developments in Optics and Communications 2015, Latvia, April 8-10, 2015.

Jacob Bauer, Ville Heikkinen, Janis Spigulis, “Spectral reflectance estimation with an optical non contact device for skin assessment”, 11th International Young Scientist Conference, Developments in Optics and Communications 2015, Latvia, April 8-10, 2015.

On June 18

Seminar summarizing the 1st year results of SOPHIS project No.3. „Biophotonics: imaging, diagnostics and monitoring” will be held June 18,2015 atthe Institute ofAtomic Physics and Spectroscopy, University of Latvia, ŠķūņuSt.4, 4th floorauditorium.

The seminar program.

  • 9:00 Introduction: goals of the project and tasks for the 1st year (J.Spīgulis)
  • 9:05 Acquisition of several monochromatic spectral images for skin chromophore mapping (A1.1.A, J.Spīgulis, I.Ošiņa)
  • 9:20 Video-imaging under infrared illumination for cardiovascular monitoring (A1.1.b, O.Ļašuka, U.Rubīns)
  • 9:35 Tissue assessment at the infrared spectral range (A1.1.c, G.Tunēns, I.Saknīte)
  • 9:50 Improvements of the multimodal imaging prototype device „SkImager” (A1.3.d, J.Bauer, E.Kviesis-Kipge)
  • 10:05 Summary and discussion