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Segrevanje tkiva z laserjem Er:YAG ob sočasnem hlajenju z vodnim pršenjem
ID Jan, Tinkara (Author), ID Jezeršek, Matija (Mentor) More about this mentor... This link opens in a new window

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Abstract
Laserski vir Er:YAG se v estetiki in dermatologiji uporablja za pomlajevanja mehkih tkiv. Tekom več zaporednih bliskov se vrhnjica kože močno segreje, zato je pomembno, da ta ne preseže praga poškodbe in bolečine. Zasnovali in postavili smo eksperimentalni sistem, ki nam omogoča sočasno osvetljevanje tkiva z laserskim virom Er:YAG in hlajenje z vodnim pršenjem. Pokazali smo, da z uporabo vzorčastega laserskega snopa povečamo odvod toplote v radialni smeri in s tem pohitrimo ohlajanje. Primerjali smo vpliv laserskega vira v živem in neživem biološkem tkivu in pokazali, da laserski vir deluje le v povrhnjici kože in ima podoben vpliv v živem in neživem tkivu. Poleg tega smo pokazali, da lahko z uporabo razvitega eksperimentalnega sistema dosežemo visoke vršne temperature brez hkratnega zviševanja bazne temperature površine.

Language:Slovenian
Keywords:laserska terapija, Er:YAG, vrhnjica, termografija, temperatura v tkivu, hlajenje
Work type:Final paper
Typology:2.11 - Undergraduate Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[T. Jan]
Year:2023
Number of pages:XII, 38 str.
PID:20.500.12556/RUL-148469 This link opens in a new window
UDC:615.849.7:536.5:62-713.4(043.2)
COBISS.SI-ID:162989571 This link opens in a new window
Publication date in RUL:24.08.2023
Views:472
Downloads:0
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Secondary language

Language:English
Title:Heating of tissue with Er:YAG laser and simultaneous water spray cooling
Abstract:
Er:YAG laser source is used in aesthetics and dermatology for soft tissue resurfacing. During multiple consecutive pulses, the skin's epidermis is heavily heated, therefore it is essential not to exceed the damage and pain threshold. We designed and implemented an experimental system that allows simultaneous heating of tissue with Er:YAG laser source and water spray cooling. We demonstrated that using a patterned laser beam increases radial heat dissipation, which accelerates the cooling process. We compared the effects of the laser source on living and non-living biological tissue and demonstrated that the laser source only works in the skin's epidermis and has a similar impact on both living and non-living tissue. Additionally, we demonstrated that by using the developed experimental system, we can achieve high peak temperatures without simultaneously increasing the basal surface temperature.

Keywords:laser therapy, Er:YAG, epidermis, thermography, tissue temperature, cooling

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