Back to Search Start Over

Comparison of fan beam, slit-slat and multi-pinhole collimators for molecular breast tomosynthesis.

Authors :
Jarno van Roosmalen
Freek J Beekman
Marlies C Goorden
Source :
Physics in Medicine & Biology; May2018, Vol. 63 Issue 10, p1-1, 1p
Publication Year :
2018

Abstract

Recently, we proposed and optimized dedicated multi-pinhole molecular breast tomosynthesis (MBT) that images a lightly compressed breast. As MBT may also be performed with other types of collimators, the aim of this paper is to optimize MBT with fan beam and slit-slat collimators and to compare its performance to that of multi-pinhole MBT to arrive at a truly optimized design. Using analytical expressions, we first optimized fan beam and slit-slat collimator parameters to reach maximum sensitivity at a series of given system resolutions. Additionally, we performed full system simulations of a breast phantom containing several tumours for the optimized designs. We found that at equal system resolution the maximum achievable sensitivity increases from pinhole to slit-slat to fan beam collimation with fan beam and slit-slat MBT having on average a 48% and 20% higher sensitivity than multi-pinhole MBT. Furthermore, by inspecting simulated images and applying a tumour-to-background contrast-to-noise (TB-CNR) analysis, we found that slit-slat collimators underperform with respect to the other collimator types. The fan beam collimators obtained a similar TB-CNR as the pinhole collimators, but the optimum was reached at different system resolutions. For fan beam collimators, a 6–8 mm system resolution was optimal in terms of TB-CNR, while with pinhole collimation highest TB-CNR was reached in the 7–10 mm range. [ABSTRACT FROM AUTHOR]

Subjects

Subjects :
TOMOSYNTHESIS
BEAM collimation

Details

Language :
English
ISSN :
00319155
Volume :
63
Issue :
10
Database :
Complementary Index
Journal :
Physics in Medicine & Biology
Publication Type :
Academic Journal
Accession number :
134569494
Full Text :
https://doi.org/10.1088/1361-6560/aabfa3