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Investigation of Deconvolution Method with Adaptive Point Spread Function Based on Scintillator Thickness in Wavelet Domainopen access

Authors
Kim, KyuseokCha, Bo KyungJeong, Hyun-WooLee, Youngjin
Issue Date
Apr-2024
Publisher
MDPI
Keywords
image deblurring; adaptive point spread function (PSF); wavelet transform; image quality assessment (IQA); radiography
Citation
BIOENGINEERING-BASEL, v.11, no.4
Journal Title
BIOENGINEERING-BASEL
Volume
11
Number
4
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/91415
DOI
10.3390/bioengineering11040330
ISSN
2306-5354
2306-5354
Abstract
In recent years, indirect digital radiography detectors have been actively studied to improve radiographic image performance with low radiation exposure. This study aimed to achieve low-dose radiation imaging with a thick scintillation detector while simultaneously obtaining the resolution of a thin scintillation detector. The proposed method was used to predict the optimal point spread function (PSF) between thin and thick scintillation detectors by considering image quality assessment (IQA). The process of identifying the optimal PSF was performed on each sub-band in the wavelet domain to improve restoration accuracy. In the experiments, the edge preservation index (EPI) values of the non-blind deblurred image with a blurring sigma of sigma = 5.13 pixels and the image obtained with optimal parameters from the thick scintillator using the proposed method were approximately 0.62 and 0.76, respectively. The coefficient of variation (COV) values for the two images were approximately 1.02 and 0.63, respectively. The proposed method was validated through simulations and experimental results, and its viability is expected to be verified on various radiological imaging systems.
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