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Izpostavljenost laboratorijskega zobnega protetika pri izdelavi litijevih disilikatnih keramičnih prevlek : diplomsko delo
ID Butinar, Aneja (Author), ID Rojko, Franc (Mentor) More about this mentor... This link opens in a new window, ID Bohinc, Peter (Reviewer)

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Abstract
Uvod: Področje zobozdravstva se stalno razvija in pacientom zagotavlja vse boljše, biokompatibilne in trajne rešitve za nadomeščanje manjkajočih ali poškodovanih zob. Ena od najnovejših inovacij na področju laboratorijske zobne protetike je uporaba polnokeramičnih prevlek iz litijevega disilikata, ki se je izkazal kot izjemno trpežen, estetski in biokompatibilen material. Kljub temu pa izdelava polnokeramičnih prevlek zahteva uporabo nekaterih nevarnih snovi, ki lahko za laboratorijske zobne protetike predstavljajo tveganje ob dolgotrajni in nepravilni izpostavljenosti. V diplomskem delu bomo izdelali polnokeramične prevleke iz litijeve disilikatne keramike z uporabo tehnologije vročega stiskanja in CAD/CAM tehnologije. Prav tako bomo opisali nevarne snovi, ki se pojavljajo pri izdelavi teh prevlek, ter predstavili ustrezne zaščitne ukrepe v zobnih laboratorijih z namenom zmanjšanja morebitnih tveganj in bolezni, ki bi lahko nastale zaradi neprimerne zaščite. V zaključnem delu diplomskega dela bomo primerjali stopnjo izpostavljenosti laboratorijskih zobnih protetikov med izdelavo polnokeramičnih prevlek po obeh metodah s ciljem ugotoviti, kateri postopek je manj invaziven. Namen: Namen diplomskega dela je raziskati nevarne snovi, ki so jim laboratorijski zobni protetiki izpostavljeni pri izdelavi polnokeramičnih litijevih disilikatnih prevlek, analizirati povezana zdravstvena tveganja ter ugotoviti varnejšo tehnologijo izdelave – vroče stiskanje ali CAD/CAM. Metode dela: V uvodnem delu smo analizirali strokovno literaturo v različnih jezikih, medtem ko praktični del vključuje izdelavo litijevih disilikatnih polnokeramičnih prevlek v zobnem laboratoriju z uporabo tehnologije vročega stiskanja in CAD/CAM tehnologije. Rezultati: V rezultatih smo opisali postopek izdelave dveh polnokeramičnih prevlek iz litijevega disilikata, ki temelji na tehnologiji vročega stiskanja in tehnologiji CAD/CAM. Naše diplomsko delo vključuje tudi primerjavo stopnje izpostavljenosti laboratorijskega zobnega protetika različnim nevarnostim med izdelavo prevlek z uporabo obeh omenjenih tehnologij. Razprava in zaključek: Naše raziskave so pokazale, da je pri izdelavi polnokeramičnih prevlek iz litijevega disilikata s tehnologijo vročega stiskanja izpostavljenost laboratorijskega zobnega protetika kemičnim, biološkim, fizičnim in ergonomskim nevarnostim večja v primerjavi s tehnologijo CAD/CAM. Ugotovili smo, da avtomatizirana in računalniško podprta tehnologija CAD/CAM zmanjšuje neposredno interakcijo z nevarnimi materiali in zmanjšuje fizične nevarnosti. Kljub temu je treba upoštevati varnostne ukrepe, kot je uporaba osebne zaščitne opreme, da se zmanjšajo tveganja, ki so še vedno prisotna pri obeh tehnologijah.

Language:Slovenian
Keywords:diplomska dela, laboratorijska zobna protetika, litijev disilikat, tehnologija vročega stiskanja, CAD/CAM tehnologija, izpostavljenost laboratorijskega zobnega protetika, varno delo v laboratoriju
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:ZF - Faculty of Health Sciences
Place of publishing:Ljubljana
Publisher:[A. Butinar]
Year:2023
Number of pages:36 str., [1] str. pril.
PID:20.500.12556/RUL-151563 This link opens in a new window
UDC:616.31
COBISS.SI-ID:167536643 This link opens in a new window
Publication date in RUL:09.10.2023
Views:403
Downloads:32
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Secondary language

Language:English
Title:Laboratory dental prosthetist exposure in lithium disilicate ceramic restoration production : diploma work
Abstract:
Introduction: The field of dentistry is constantly evolving and providing patients with increasingly better, biocompatible, and durable solutions for replacing missing or damaged teeth. One of the latest innovations in the field of dental laboratory prosthetics is the use of all-ceramic restorations made of lithium disilicate, which has proven to be an exceptionally strong, aesthetic, and biocompatible material. However, the production of all-ceramic restorations requires the use of some hazardous substances that may pose a risk to dental laboratory technicians with prolonged and improper exposure. In this seminar paper, we will create an all-ceramic lithium disilicate restoration using two methods: hot pressing technology and CAD/CAM technology. At the same time, we will describe the hazardous substances encountered during the fabrication process and the necessary protective measures for both methods to prevent potential diseases and dangers that may arise from improper protection. Purpose: The purpose of the thesis is to investigate the hazardous substances to which dental laboratory technicians are exposed during the production of all-ceramic lithium disilicate restorations, analyze the associated health risks, propose appropriate protective measures, and determine the safer production technology - hot pressing or CAD/CAM. Methods: In the theoretical part of the paper, we analyzed professional literature in different languages, while the practical part of the paper involves the fabrication of the product in a dental laboratory using hot pressing technology and CAD/CAM technology. Results: In the results, we have detailed the process of creating two full-ceramic lithium disilicate veneers using hot pressing technology and CAD/CAM technology. Our thesis also includes a comparison of the level of exposure of the laboratory dental technician to various hazards during the manufacturing of veneers using both aforementioned technologies. Discussion and Conclusion: Our research revealed that the exposure of the laboratory dental technician to chemical, biological, physical, and ergonomic hazards is greater when making full-ceramic lithium disilicate veneers using hot pressing technology compared to CAD/CAM technology. We found that the automated and computer-assisted CAD/CAM technology reduces direct interaction with hazardous materials and decreases physical hazards. Despite this, it remains essential to follow safety measures, such as the use of personal protective equipment, to mitigate the risks that are still present in both technologies.

Keywords:diploma theses, laboratory dental prosthetics, lithium disilicate, hot pressing technology, CAD/CAM technology, exposure of the dental laboratory technician, safe work in the laboratory

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