Evaluation of pinhole collimator materials for micron-resolution ex vivo SPECT.

Phys Med Biol

Section Biomedical Imaging, Delft University of Technology, Delft, The Netherlands. Department of Translational Neuroscience, Brain Center Rudolf Magnus, University Medical Center, Utrecht, The Netherlands.

Published: May 2019

Pinhole collimation is widely recognized for offering superior resolution-sensitivity trade-off in SPECT imaging of small subjects. The newly developed EXIRAD-3D autoradiography technique (MILabs B.V.) based on a highly focusing multi-pinhole collimator achieves micron-resolution SPECT for cryo-cooled tissue samples. For such high resolutions, the choice of pinhole material may have a significant impact on images. Therefore, this paper aims to compare the performance of EXIRAD-3D with lead, tungsten, gold, and depleted uranium pinhole collimators designed such that they achieve equal sensitivities. Performance in terms of resolution is characterized for several radioisotopes, namely In (171 keV and 245 keV), Tc (140 keV), Tl (71 keV), and I (27 keV). Using Monte Carlo simulation, point spread functions were generated and their profiles as well as their full-width-at-half-maximum and full-width-at-tenth-maximum were determined and evaluated for different materials and isotopes. Additionally, simulated reconstructions of a Derenzo resolution phantom, validated with experimental data, were judged by assessment of the resolvable rods as well as a contrast-to-noise ratio (CNR) analysis. Our results indicate that using materials with higher photon-stopping power yields images with better CNR for the studied isotopes with improvements ranging from 1.9% to 36.6%. Visual assessment on the reconstructed images suggests that for EXIRAD-3D, the tungsten collimator is generally a good choice for a wide range of SPECT isotopes. For relatively high-energy isotopes such as In, using gold inserts can be beneficial.

Download full-text PDF

Source
http://dx.doi.org/10.1088/1361-6560/ab1618DOI Listing

Publication Analysis

Top Keywords

evaluation pinhole
4
pinhole collimator
4
collimator materials
4
materials micron-resolution
4
micron-resolution vivo
4
spect
4
vivo spect
4
spect pinhole
4
pinhole collimation
4
collimation recognized
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!