A1 Refereed original research article in a scientific journal

Influences of 3D PET scanner components on increased scatter evaluated by a Monte Carlo simulation




AuthorsHirano Y, Koshino K, Iida H

PublisherIOP PUBLISHING LTD

Publication year2017

JournalPhysics in Medicine and Biology

Journal name in sourcePHYSICS IN MEDICINE AND BIOLOGY

Journal acronymPHYS MED BIOL

Volume62

Issue10

First page 4017

Last page4030

Number of pages14

ISSN0031-9155

DOIhttps://doi.org/10.1088/1361-6560/aa6644


Abstract
Monte Carlo simulation is widely applied to evaluate the performance of three-dimensional positron emission tomography (3D-PET). For accurate scatter simulations, all components that generate scatter need to be taken into account. The aim of this work was to identify the components that influence scatter. The simulated geometries of a PET scanner were: a precisely reproduced configuration including all of the components; a configuration with the bed, the tunnel and shields; a configuration with the bed and shields; and the simplest geometry with only the bed. We measured and simulated the scatter fraction using two different set-ups: (1) as prescribed by NEMA-NU 2007 and (2) a similar set-up but with a shorter line source, so that all activity was contained only inside the field-of-view (FOV), in order to reduce influences of components outside the FOV. The scatter fractions for the two experimental set-ups were, respectively, 45% and 38%. Regarding the geometrical configurations, the former two configurations gave simulation results in good agreement with the experimental results, but simulation results of the simplest geometry were significantly different at the edge of the FOV. From the simulation of the precise configuration, the object (scatter phantom) was the source of more than 90% of the scatter. This was also confirmed by visualization of photon trajectories. Then, the bed and the tunnel were mainly the sources of the rest of the scatter. From the simulation results, we concluded that the precise construction was not needed; the shields, the tunnel, the bed and the object were sufficient for accurate scatter simulations.



Last updated on 2024-26-11 at 20:45