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A COUNT-DEPENDENT RECONSTRUCTION FILTER OPTIMIZED TO MATCH THE LESION SIZE AND THE OBJECT CONTRAST IN SPECT SCIE SCOPUS

Title
A COUNT-DEPENDENT RECONSTRUCTION FILTER OPTIMIZED TO MATCH THE LESION SIZE AND THE OBJECT CONTRAST IN SPECT
Authors
KIM, JHKIM, KI
Date Issued
1995-08
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGI
Abstract
We present a new formulation, based on a physical model of SPECT lesion detectability, for a reconstruction filter optimized to improve lesion detectability. To determine the optimal parameters for the filter, we focused on improving the local detectability of the lesion corresponding to the SPECT detection limit, or equivalently increasing the local S/N ratio of the threshold detectable lesion. The threshold lesion was determined by the minimum detectable lesion size (MDLS) from the SPECT lesion detectability contrast-detail curve. The proposed filter showed the characteristics of resolution recovery and smoothing for MDLS in the resolution-limited and photon-limited regions, respectively, compensating for the relative impacts of the main limitation factors on threshold detectability. In simulations which varied physical factors such as photon counts, object contrast and detector system resolution, the proposed filter produced a considerable improvement in SPECT image duality in terms of lesion detectability.
Keywords
EMISSION COMPUTED-TOMOGRAPHY; NUCLEAR-MEDICINE IMAGES; CONSTANT ATTENUATION; RESOLUTION; METZ
URI
https://oasis.postech.ac.kr/handle/2014.oak/29266
ISSN
0018-9499
Article Type
Article
Citation
IEEE TRANSACTIONS ON NUCLEAR SCIENCE, vol. 42, no. 4, page. 1321 - 1330, 1995-08
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김광익KIM, KWANG IK
Dept of Mathematics
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