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Uporaba meritve globine interakcije v pozitronski emisijski tomografiji s planarnimi detektorji
ID Vitas, Dominik (Author), ID Dolenec, Rok (Mentor) More about this mentor... This link opens in a new window

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Abstract
V magistrskem delu so bile obravnavane možnosti izboljšav v pozitronski emisijski tomografiji (PET), s poudarkom na povečanju dostopnosti te slikovne metode, skozi zmanjšanje stroškov, kar se je skušalo doseči z načrtovanjem sistemov z manjšo geometrijsko pokritostjo detektorjev. V ta namen je bila izbrana geometrija planarnih detektorjev, ki pa zaradi zmanjšanega prostorskega kota in večjega pomena paralaksnega učinka prinaša določene pomanjkljivosti. Kot možna rešitev teh slabosti je bila prepoznana uporaba informacije o globini interakcije (DOI). Izvedba z obojestranskim odčitavanjem scintilatorskega kristala se je izkazala za najprimernejšo. Predstavljene so bile različne metode za določanje DOI na podlagi časov in števila optičnih fotonov, zaznanih na obeh straneh kristala. Najbolj natančna metoda je bila nato uporabljena za popravek časov detekcije, kar je omogočilo izboljšanje časovne ločljivosti koincidenčnih dogodkov (CTR). Rezultati so pokazali, da uporaba meritve DOI izboljša časovno ločljivost in s tem prispeva k večji natančnosti slike v PET sistemih z obojestranskim odčitavanjem. Na podlagi dobljenih rezultatov je bilo ugotovljeno, da geometrija s planarnimi detektorji in obojestranskim odčitavanjem predstavlja upravičeno alternativo tradicionalnim PET skenerjem.

Language:Slovenian
Keywords:pozitronska emisijska tomografija (PET), globina interakcije (DOI), časovna ločljivost koincidenc (CTR), obojestransko odčitavanje, simulacija, planarni detektorji
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FMF - Faculty of Mathematics and Physics
Year:2025
PID:20.500.12556/RUL-172507 This link opens in a new window
COBISS.SI-ID:247869443 This link opens in a new window
Publication date in RUL:07.09.2025
Views:177
Downloads:62
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Secondary language

Language:English
Title:Use of depth of interaction measurement in flat panel positron emission tomography
Abstract:
In this master’s thesis, potential improvements in positron emission tomography (PET) were investigated, with an emphasis on increasing the accessibility of this imaging modality through cost reduction. This was pursued by designing systems with reduced geometric detector coverage. To this end, a flat panel detector geometry was selected; however, this approach introduces certain limitations due to the reduced detection solid angle and increased importance of the parallax effect. As a possible solution to these drawbacks, the use of depth of interaction (DOI) information was identified. A double-sided readout of the scintillation crystal was found to be the most suitable implementation. Various methods for DOI estimation were presented, based on the timing and the number of optical photons detected on both sides of the crystal. The most accurate method was then used to correct the detection times, enabling an improvement in the coincidence time resolution (CTR). The results showed that the inclusion of DOI information improves timing resolution and thereby contributes to greater image accuracy in PET systems with double-sided readout. Based on the obtained results, it was concluded that planar detector geometry with double-sided readout represents a justified alternative to conventional PET scanners.

Keywords:Positron emission tomography (PET), Depth-of-interaction (DOI), Coincidence timing resolution (CTR), Dual-ended readout, Simulation, Flat panel

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