Poor optical stability of molecular dyes when used as absorbers in water-based tissue-simulating phantoms

Blaž Cugmas , Peter Naglic , Sunil Menachery , Franjo Pernuš
Design and Quality for Biomedical Technologies XII 10870

1
2019
Estimation of optical properties by spatially resolved reflectance spectroscopy in the subdiffusive regime.

Peter Naglic , Franjo Pernuš , Boštjan Likar , Miran Bürmen
Journal of Biomedical Optics 21 ( 9) 095003 -095003

22
2016
OpenCL framework for fast estimation of optical properties from spatial frequency domain images

Peter Naglic , Yevhen Zelinskyi , Boštjan Likar , Franjo Pernuš
High-Speed Biomedical Imaging and Spectroscopy IV 10889 1088919

1
2019
Fast and accurate Monte Carlo simulations of subdiffusive spatially resolved reflectance for a complex probe-sample interface

Yevhen Zelinskyi , Peter Naglic , Franjo Pernuš , Boštjan Likar
Optical Fibers and Sensors for Medical Diagnostics and Treatment Applications XIX 10872

2019
From Monte Carlo simulations to efficient estimation of optical properties for spatial frequency domain imaging

Peter Naglic , Yevhen Zelinskyi , Boštjan Likar , Franjo Pernuš
Molecular-Guided Surgery: Molecules, Devices, and Applications V 10862 1086209

2019
Simple approach to refractive index measurements of polystyrene microspheres (Conference Presentation)

Peter Naglic , Yevhen Zelinskyi , Boštjan Likar , Miran Bürmen
Design and Quality for Biomedical Technologies XIII

2020
Properties of contact pressure induced by manually operated fiber-optic probes.

Maksimilijan Bregar , Blaž Cugmas , Peter Naglic , Daniela Hartmann
Journal of Biomedical Optics 20 ( 12) 127002 -127002

6
2015
Detection of canine skin and subcutaneous tumors by visible and near-infrared diffuse reflectance spectroscopy

Blaž Cugmas , Tanja Plavec , Maksimilijan Bregar , Peter Naglic
Journal of Biomedical Optics 20 ( 3) 037003 -037003

8
2015
Autofocus algorithms for lensless on-chip microscopy validated on synthetic targets for microfluidic applications and particle tracking

Zan Cimperman , Peter Naglic , Franjo Pernuš , Boštjan Likar
Smpte Journal 12136 315 -327

2022
Optical properties of PlatSil SiliGlass tissue-mimicking phantoms (vol 11, pg 3753, 2020)

Peter Naglic , Yevhen Zelinskyi , Luka Rogelj , Jost Stergar
BIOMEDICAL OPTICS EXPRESS 11 ( 8) 4275 -4275

2020
Raman spectroscopy for medical diagnostics

Peter Naglic
University of Ljubljana

7
2012
Dolocanje opticnih lastnosti sipajocih medijev s hiperspektralnim slikanjem

Matic Ivancic , Peter Naglic , Miran Bürmen
vol 86 175 -184

2
Optical properties of silicone rubber tissue phantoms for biomedical optics applications

Peter Naglič , Miran Bürmen , Matija Milanic , Jost Stergar
Bulletin of the American Physical Society

2020
Efficient Monte Carlo simulations of spatially resolved reflectance for detection schemes with low numerical apertures

Yevhen Zelinskyi , Peter Naglič , Franjo Pernuš , Boštjan Likar
Diffuse Optical Spectroscopy and Imaging VII 11074

2019
Suitability of diffusion approximation for an inverse analysis of diffuse reflectance spectra from human skin in vivo

Peter Naglič , Luka Vidovič , Matija Milanič , Lise L. Randeberg
OSA Continuum 2 ( 3) 905 -922

10
2019
Regression models for real-time estimation of optical and structural sample properties from subdiffusive spatially resolved reflectance

Peter Naglič , Matic Ivančič , Franjo Pernuš , Boštjan Likar
Optical Interactions with Tissue and Cells XXIX 10492

2018
Portable measurement system for real-time acquisition and analysis of in-vivo spatially resolved reflectance in the subdiffusive regime

Peter Naglič , Franjo Pernuš , Boštjan Likar , Miran Bürmen
Design and Quality for Biomedical Technologies XI 10486 1048618

1
2018
Efficient estimation of subdiffusive optical parameters in real time from spatially resolved reflectance by artificial neural networks

Matic Ivančič , Peter Naglič , Franjo Pernuš , Boštjan Likar
Optics Letters 43 ( 12) 2901 -2904

10
2018
Applicability of diffusion approximation in analysis of diffuse reflectance spectra from healthy human skin

Peter Naglič , Luka Vidovič , Matija Milanič , Lise L. Randeberg
Biophotonics—Riga 2013 9032

13
2013