Papers in Conference Proceedings (internationally
cited)
I.
Skin chromophore
mapping by modified video microscope. Proc. SPIE 8798,
87980T (2013).
9. J.Spigulis, D.Jakovels, L.Elste. Towards
single snapshot multispectral skin assessment. Proc. SPIE 8216,
82160L (2012).
14. I. Kuzmina, I. Diebele, L. Valeine, D.
Jakovels, A. Kempele, J. Kapostinsh, J. Spigulis. Multi-spectral imaging
analysis of pigmented and vascular skin lesions: results of a clinical trial. Proc. SPIE, v.7883 (BIOS’11, San
Francisco, USA), 788312 (2011).
22. I.
Kuzmina, L. Asare,
26. R. Erts, U. Rubins, and J. Spigulis,
Monitoring of blood pulsation using non-contact technique, Proc. IFMBE 25/VII
(11th World Congr. Med Phys. Biomed. Engin.,
27. E.
Kviesis-Kipge, E. Curkste, J. Spigulis and D. Gardovska. Optical studies of the
capillary refill kinetics in fingertips, Proc.
IFMBE, 25/VII (11th World Congr.
Med Phys. Biomed. Engin.,
28. J.
Spigulis, R. Erts, V. Nikiforovs, E. Kviesis-Kipge. Wearable wireless photoplethysmography
sensors. Proc. SPIE, vol. 6991
(Photonics Europe,
29. J. Paturskis, V. Veliks, M. Ozols, I.
Svikis, R. Erts, J. Spigulis. Photoplethysmography device for detection of
changes in the vasomotor parameters of small laboratory animals. Proc. IFMBE, v. 20 (NBC-14, Riga, LV),
pp. 386-389, 2008.
30. J. Spigulis, A. Lihachev, L. Gailite, R. Erts. Novel laser technologies for human skin in-vivo
assessment. Proc. SPIE, Vol. 7022 (ALT’07 - Advanced Laser Technologies, Levi,
FI), 70220N, 2008.
31. J. Spigulis, L. Gailite, A. Lihachev. Contact probe pressure effects in skin
multi-wavelength photoplethysmography. Proc.
SPIE-OSA, v. 6628 (Diagnostic Optical Spectroscopy in Biomedicine IV,
32. J. Spigulis. Biophotonics
Master studies: teaching and training experience at
33.
J. Spigulis, L. Gailite, A. Lihachev. Multi-wavelength
photoplethysmography for simultaneous recording of
skin blood pulsations at different vascular depths. Proc. SPIE, vol.
6430 (BIOS’07, San Jose, USA), 2007, pp. 64301I-1 - 64301I-6.
34. I.
Kuzmina, A. Lihachev, L. Gailite, J. Spigulis. Compact
multi-functional skin spectrometry set-up. Proc.
SPIE, vol. 6596 (Advanced Optical Materials, Technologies and Devices,
35. J. Spigulis. Application prospects of silica core
side-glowing optical fibers. Proc. SPIE v. 5952 (Optical Fibers II:
Applications,
36. R. Erts, J. Spigulis, M. Ozols. Optical systems for
non-invasive cardiovascular biosensing. Proc. SPIE
v. 5908 (Optical Information Systems,
37.
R. Erts, I. Kukulis, J.
Spigulis, L. Kere. Dual channel photoplethysmography studies of cardio-vascular response to
the body position changes, Proc. SPIE v. 5859 (European Biomedical
Optics Symposium EBIOS’05,
38. J. Spigulis. Optical non-invasive monitoring of skin
blood pulsations. Proc. SPIE (Avdanced Optical
Materials and Devices – 4,
39. R. Erts, I. Kukulis, J. Spigulis. Photonic vascular diagnostics by four-channel photoplethysmography. Proc. SPIE (Avdanced Optical Materials and Devices – 4,
40. J. Spigulis, R. Erts,
41. J.
Spigulis, R. Erts, M. Ozols. Optical multi-channel monitoring of skin blood
pulsations for cardiovascular assessment. Proc.
SPIE, Vol. 5318 (Advanced Biomedical and Clinical Diagnostic Systems,
BIOS’04,
42. J. Spigulis, R. Erts, M. Ozols. A portable two-channel PPG
cardiovascular sensor device. Proc.
SPIE, Vol. 5138 (Photon Migration and
Diffuse-Light Imaging,
43. J.
Spigulis, R. Erts, U. Rubins. Micro-circulation of skin blood: optical
monitoring by advanced photoplethysmography
techniques. – Proc. SPIE Vol. 5119
(Bioengineered and Bioinspired Systems, Maspalomas, ES), 2003, pp. 219-225.
44. M. Stagitis, J. Spigulis. Optical pressure sensor based on the
side-emitting optical fibre. - Proc. SPIE Vol. 5123 (Advanced Optical Devices and Medical
Applications,
45. J.
Spigulis, M. Ozols, R. Erts, K. Prieditis. A portable
device for optical assessment of the cardiovascular condition. Proc. SPIE Vol. 5123 (Advanced Optical
Devices and Medical Applications,
46. J.
Spigulis,
47. J.
Spigulis. Teaching of laser-medical topics: Latvian experience. Proc. SPIE., Vol. 4903 (Laser
Florence 2001: A Window on the Laser Medicine World,
48. J.
Spigulis, A. Pfafrods. Pressure sensitivity of the side-glowing optical fibres. Proc.
SPIE Vol. 4318 (Smart Optical Inorganic Structures and Devices,
ADOM-2,
49. J.
Spigulis, G. Venckus, M. Ozols. Optical sensing for early
cardio-vascular diagnostics. Proc.
SPIE. Vol. 3911 (Biomedical Optics Symposium BIOS ‘2000,
50. J.
Spigulis. Master’s level education in Biomedical Optics: four-year experience
at
51. J.
Spigulis, U. Rubins. Photoplethysmographic sensor
with smoothed output signals. Proc.
SPIE Vol,
3570 (Biomedical Optics Europe,
52. J.
Spigulis. MSc course programme on Biomedical Optics. Proc. SPIE Vol. 3190, 1997
(Education and Training in Optics,
53. J.
Spigulis, D. Pfafrods. Clinical potential of the side-glowing optical fibers. Proc. SPIE Vol. 2977 (Biomedical
Optics Symposium BIOS ’97,
54. J.
Spigulis, D. Pfafrods, M. Stafeckis, W. Jelinska-Platace.
The "glowing" optical fibre designs and
parameters. Proc. SPIE
Vol. 2967 (Advanced Optical Materials and Devices,
55.
J. Spigulis, D. Pfafrods, M. Stafeckis. Optical fiber
diffusive tip designs for medical laser-lightguide
delivery systems. Proc. SPIE Vol.
2328, 1994 ("Biomedical Optics Europe '94", Lille, France), p. 69-75.
56. J.
Spigulis, J. Lazdins, G. Barens. Fiberoptical
intensity-ratio refractometer with digital display. Proc. SPIE Vol. 2068 (Optical
Tools for Manufacturing and Advanced
Automation,
57. J.
Spigulis. Compact illuminators, collimators and focusers with half-spherical
input aperture. Proc. SPIE
Vol. 2065 (Optical Tools for Manufacturing and Advanced Automation,