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Razvoj merilnih metod in določitev temperaturnih pragov koagulacije krvi pri obsevanju z modro lasersko svetlobo
ID Jan, Tinkara (Author), ID Jezeršek, Matija (Mentor) More about this mentor... This link opens in a new window

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Abstract
V magistrski nalogi smo raziskali vpliv modre laserske svetlobe z valovno dolžino 445 nm na koagulacijo krvi. Zaradi boljše absorpcije v hemoglobinu v primerjavi z zelenim laserjem (532 nm) je modra svetloba učinkovitejša pri zaustavljanju krvavitve. Cilj raziskave je bil eksperimentalno določiti ključne parametre interakcije za zanesljivo in neablativno koagulacijo krvi. Zasnovali smo eksperimentalni sistem s sinhroniziranim delovanjem hitre termalne kamere in ultrahitre kamere v vidnem spektru, ki omogočata natančno spremljanje temperaturnih in optičnih sprememb med procesom. Na podlagi analize posnetkov smo določili temperaturo začetka koagulacije in ablacije ter spremljali optične spremembe v krvi. Določili smo temperaturno okno za varno koagulacijo (85–145 $^°$C) in fluenčne pragove za njen začetek pri različnih močeh laserja (3,1–4,5 J/$cm^2$). Prav tako smo opredelili fluenčne pragove za prehod v ablacijo, ki znašajo med 13,6 in 23,9 J/$cm^2$. Razvita metodologija omogoča natančno analizo poteka koagulacije in predstavlja pomembno osnovo za nadaljnji razvoj kliničnih aplikacij modre laserske svetlobe pri nadzoru krvavitev.

Language:Slovenian
Keywords:laserski sistemi v medicini, modra laserska svetloba, koagulacija krvi, ablacija tkiva, lasersko obsevanje tkiva, termalni odziv, simulacija Monte Carlo, hemoglobin, tarčni kromofori
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Year:2025
Number of pages:XX, 79 str.
PID:20.500.12556/RUL-171364 This link opens in a new window
UDC:621.375.826:612.115:536.911(043.2)
COBISS.SI-ID:246761219 This link opens in a new window
Publication date in RUL:23.08.2025
Views:212
Downloads:0
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Secondary language

Language:English
Title:Development of measurement methods and determination of blood coagulation temperature thresholds under blue laser light irradiation
Abstract:
In this master’s thesis, we investigated the effect of blue laser light with a wavelength of 445 nm on blood coagulation. Due to its higher absorption in hemoglobin compared to green laser light (532 nm), blue light proves more effective in stopping bleeding. The aim of the study was to experimentally determine key interaction parameters for reliable and non-ablative blood coagulation. We developed an experimental system featuring synchronized operation of a high-speed thermal camera and an ultra-fast visible-spectrum camera, enabling precise monitoring of temperature and optical changes during the process. Based on the analysis of the recordings, we determined the temperature thresholds for the onset of coagulation and ablation and tracked optical changes in the blood. We identified a safe coagulation temperature window (85–145 $^°$C) and established fluence thresholds for its onset at different laser powers (3.1–4.5 J/$cm^2$). Additionally, we defined the fluence thresholds for the transition to ablation, which ranged from 13.6 to 23.9 J/$cm^2$. The developed methodology enables detailed analysis of the coagulation process and provides a solid foundation for further development of clinical applications of blue laser light in bleeding control.

Keywords:blue laser light, blood coagulation, tissue ablation, laser irradiation of tissue, thermal response, Monte Carlo simulation, hemoglobin, target chromophores

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