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用于X射线成像的不同闪烁探测器厚度下自适应点扩散函数估计方法的开发

Development of Adaptive Point-Spread Function Estimation Method in Various Scintillation Detector Thickness for X-ray Imaging.

作者信息

Cha Bo Kyung, Lee Youngjin, Kim Kyuseok

机构信息

Precision Medical Device Research Center, Korea Electrotechnology Research Institute (KERI), 111, Hanggaul-ro, Sangnok-gu, Ansan-si 15588, Gyeonggi-do, Republic of Korea.

Department of Radiological Science, College of Health Science, Gachon University, 191, Hambangmoe-ro, Yeonsu-gu, Incheon 21936, Republic of Korea.

出版信息

Sensors (Basel). 2023 Sep 30;23(19):8185. doi: 10.3390/s23198185.

Abstract

An indirect conversion X-ray detector uses a scintillator that utilizes the proportionality of the intensity of incident radiation to the amount of visible light emitted. A thicker scintillator reduces the patient's dose while decreasing the sharpness. A thin scintillator has an advantage in terms of sharpness; however, its noise component increases. Thus, the proposed method converts the spatial resolution of radiographic images acquired from a normal-thickness scintillation detector into a thin-thickness scintillation detector. Note that noise amplification and artifacts were minimized as much as possible after non-blind deconvolution. To accomplish this, the proposed algorithm estimates the optimal point-spread function (PSF) when the structural similarity index (SSIM) and feature similarity index (FSIM) are the most similar between thick and thin scintillator images. Simulation and experimental results demonstrate the viability of the proposed method. Moreover, the deconvolution images obtained using the proposed scheme show an effective image restoration method in terms of the human visible system compared to that of the traditional PSF measurement technique. Consequently, the proposed method is useful for restoring degraded images using the adaptive PSF while preventing noise amplification and artifacts and is effective in improving the image quality in the present X-ray imaging system.

摘要

间接转换X射线探测器使用一种闪烁体,该闪烁体利用入射辐射强度与发射的可见光量之间的比例关系。较厚的闪烁体在降低患者剂量的同时会降低清晰度。薄闪烁体在清晰度方面具有优势;然而,其噪声分量会增加。因此,所提出的方法将从正常厚度闪烁探测器获取的射线照相图像的空间分辨率转换为薄厚度闪烁探测器的空间分辨率。请注意,在非盲解卷积后,噪声放大和伪影已尽可能最小化。为实现这一点,所提出的算法在厚闪烁体图像和薄闪烁体图像之间的结构相似性指数(SSIM)和特征相似性指数(FSIM)最相似时估计最佳点扩散函数(PSF)。仿真和实验结果证明了所提出方法的可行性。此外,与传统PSF测量技术相比,使用所提出方案获得的解卷积图像在人类视觉系统方面显示出一种有效的图像恢复方法。因此,所提出的方法可用于使用自适应PSF恢复退化图像,同时防止噪声放大和伪影,并且在提高当前X射线成像系统的图像质量方面是有效的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e199/10574908/c6221b577c75/sensors-23-08185-g001.jpg

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