Peer-reviewed journal papers

 

1.    I.Saknite, A.Zavorins, D.Jakovels, J.Spigulis, J.Kisis. Comparison of single-spot technique and RGB imaging for erythema index estimation. Physiol.Meas., 37(3), 333-346 (2016).

2.     J.Spigulis, I.Oshina. Snapshot RGB mapping of skin melanin and hemoglobinJ.Biomed.Opt., 20(5), 050503 (2015).

3.     A.Lihachev, A.Derjabo, I.Ferulova, M.Lange, I.Lihacova, J.Spigulis. Autofluorescence imaging of Basal Cell Carcinoma by smartphone RGB camera. J.Biomed.Opt., 20(12), 120502 (2015).

  1. I.Kuzmina, M.Lacis, J.Spigulis, A.Berzina, L.Valaine. Study of smartphone suitability for mapping of skin chromophoresJ.Biomed.Opt., 20(9), 090503, 2015.
  2. I.Ferulova, A.Lihachev, J.SpigulisPhotobleaching effects on in-vivo skin autofluorescence lifetime. J.Biomed.Opt., 20(5), 051031 (2015).
  3. A. Lihachev, I. Ferulova, K. Vasiljeva, J. Spigulis. Investigation of in-vivo skin autofluorescence lifetimes under long-term cw optical excitationQuant.Electr., 44 (8), 770-773 (2014).
  4.  J.Spigulis, U.Rubins, E.Kviesis-Kipge, O.Rubenis. SkImager: a concept device for in-vivo skin assessment by multimodal imaging. Proc.Est.Acad.Sci., 63(3), 213-220 (2014).
  5. A.Silapetere, I.Saknite, J.SpigulisDevelopment and experimental study of phantoms for mapping skin chromophores. Latv.J.Phys.Techn. Sci., 51 (3), 58-66 (2014).
  6. U.Rubins, J.Zaharans, I.Lihacova, J.Spigulis. Multispectral video-microscope modified for skin diagnostics. Latv.J.Phys.Techn.Sci., 51(5), 65-70 (2014).
  7. D.Jakovels, I.Kuzmina, A.Berzina, L.Valeine, J.Spigulis. Noncontact monitoring of vascular lesion phototherapy efficiency by RGB multispectral imagingJ.Biomed.Opt., v.18, No.12,126019 (2013).

11. I.Diebele, I.Kuzmina, A.Lihachev, J.Spigulis, J.Kapostinsh, A.Derjabo, L.Valaine. Clinical evaluation of melanomas and common nevi by spectral imaging, Biomed.Opt.Express, v.3, No.3, pp. 467-472, 2012.

  1. J.Spigulis. Biophotonic technologies for noninvasive assessment of skin condition and blood microcirculationLatv.J.Phys.Techn.Sci., v.49, No.5, pp.63-80 (2012).
  2.  A.Bekina, I.Diebele, U.Rubins, J.Zaharans, A.Derjabo, J.Spigulis. Multispectral assessment of skin malformations by modified video-microscope. Latv.J.Phys.Techn.Sci., v.49, No.5, pp.4-8 (2012).
  3.  D.Jakovels, J.Spigulis. RGB imaging device for mapping and monitoring of hemoglobin distribution in skinLith. J.Phys., v.52, No.1, pp. 50-54 (2012).
  4. L.Asare, E.Kviesis-Kipge, M.Ozols, J.Spigulis, R.Erts. Multi-spectral Optoelectronic Device for Skin Microcirculation AnalysisLith. J.Phys., v.52, No.1, pp. 59-62 (2012).
  5. I.Ferulova, A.Rieba, J.Lesins, A.Berzina, A.Lihachev, J.Spigulis. Portable device for skin autofluorescence photobleaching measurementsLith. J.Phys., v.52, No.1, pp. 55-58 (2012).
  6. I.Kuzmina, I. Diebele, D. Jakovels, J.Spigulis, L..Valeine, J. Kapostinsh. Towards noncontact skin melanoma selection by multispectral imaging analysisJ. Biomed. Opt., v.16, No.6, 060502 (2011).
  7. I.Kuzmina, I.Diebele, J.Spigulis, L.Valeine, A.Kempele, A.Abelite. Contact and contactless diffuse reflectance spectroscopy: potential for recovery monitoring of vascular lesions after intense pulsed light treatmentJ. Biomed. Opt., v. 16, No.4, 040505 (2011).
  8.  I. Saknite, D. Jakovels, J. Spigulis. Distant determination of bilirubin distribution in skin by multi-spectral imaging. Latv.J.Phys.Tech.Sci., No.2, p.50-55 (2011).
  9. A. Lihachev, J. Lesins, D. Jakovels, J. Spigulis. Low power cw-laser signatures on human skinQuant. Electr., v. 40, No.12, 1077-1080 (2010).
  10. D. Jakovels and J. Spigulis, 2-D mapping of skin chromophores in the spectral range 500-700 nmJ. Biophoton. v.3, No. 3, pp. 125–129 (2010).
  11. R. Erts, E. Kviesis-Kipge, J. Zaharans, E. Zaharans, J. SpigulisWireless photoplethysmography finger sensor probeIEEE Explore10.1109/BEC.2010.5630194, p. 283-284 (2010).
  12. J. Spigulis, A. Lihachev, and R. Erts, Imaging of laser-excited tissue autofluorescence bleaching ratesAppl. Opt., v. 48, No. 10, pp. D163-D168 (2009).
  13. L. Gailite, J. Spigulis, A. Lihachev. Multilaser photoplethysmography techniqueLas. Med. Sci., v. 23, pp. 189-193 (2008).
  14. J. Spigulis, L. Gailite, A. Lihachev, R. Erts. Simultaneous recording of skin blood pulsations at different vascular depths by multi-wavelength photoplethysmographyAppl. Opt., v. 46, No. 10, pp. 1754-1759 (2007).
  15.  A. Lihachev, J. Spigulis. Skin autofluorescence fading at 405/532 nm laser excitationIEEE Xplore, 10.1109/NO, pp. 63-65 (2007).
  16.  M. Soto Thompson, T. Johansson, N. Bendsoe, A. Derjabo, J. Kapostinsh, S. Palsson, U. Stenram, S. Andesson-Engels, J. Spigulis, S. Svanberg, K. Svanberg. Photodynamic therapy of nodural Basal Cell Carcinoma with multi-fibre contact light deliveryJ. Envir. Path., Toxic. Onc., v. 25, p. 411-424 (2006).
  17.  A. Lihachev, J. Spigulis. Skin autofluorescence: intensity fading at 405 nm and 532 nm laser excitationLatv. J. Phys. Techn. Sci., No. 2(II), pp. 116-120 (2006).
  18. J. Spigulis. Optical non-invasive monitoring of skin blood pulsationsAppl. Opt., v. 44, No. 10, pp. 1850-1857 (2005).
  19.  R. Erts, J. Spigulis, I. Kukulis, M. Ozols. Bilateral photoplethysmography studies of the leg arterial stenosisPhysiol. Meas., v. 26, pp. 865-874 (2005).
  20. J. Spigulis. Side-emitting optical fibers brighten our world in new waysOpt. Photon. News, pp. 34-39, Oct. (2005).
  21. M. Apine, J. Spigulis, P. A. Oberg,  Microcirculation in masseteric muscles at permanent muscular facial pain in krandiomandibular dysfunctionMed. Biol. Eng. Comput., v. 37, p. 327, 1999.
  22. Y. Dektyar, J. Spigulis, et al. Joint Baltic Biomedical Engineering and Physics courses. – Med. Biol. Eng. Comput., v. 37, Suppl. 1, p. 144-145, 1999.
  23. G. Venckus, J. Spigulis. Frequency filtering effects on the single-period photoplethysmography signalsMed. Biol. Eng. Comput., v. 37, Suppl. 1, pp. 218-219 (1999).
  24. J. Spigulis, J. Lazdins, D. Pfafrods, M. Stafeckis. Side-emitting optical fibers for clinical applicationsMed. Biol. Eng. Comput., v.34, Suppl.1, Pt. 1. p. 285-286 (1996).
  25. J. Spigulis. Compact dielectric reflective elements. 1. Half-sphere concentrators of radially emitted lightAppl. Opt., v. 33, No. 25, p. 5970 – 5974 (1994).
  26. J. Spigulis, J. Lazdins. Compact dielectric reflective elements. 2. Multichannel filter of closely spaced spectral bandsAppl. Opt., v. 33, No. 28, p. 6638-6641 (1994).
  27. J. Spigulis, A. Rieba, M. Vitols. Detector of the optical fiber faults. PTE, Moscow (Instrum. & Experim. Techn., Plenum Publ., USA), No 6, p. 184 (1989).
  28. J. Spigulis. Radio-frequency electrodeless tubes as optical temperature sensors.  PTE, Moscow (Instrum. & Experim. Techn., Plenum Publ., USA), No.3, p. 209 (1983).
  29. A. Briuhovetski, J. Spigulis, R. Orlov. Calibrator of pulsed radiation. PTE, Moscow (Instrum. & Experim. Techniques, Plenum Publ., USA), No 1, p. 225 – 226 (1983).
  30. A.Bulishev, V.Malkin, N.Preobrazhensky, J.Spigulis. Kinetics of excitation transfer in mixtures of metal vapors and molecular gasesOpt. Spectrosc. (USSR), v.46, No. 6, p. 639 (1979).