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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Experimental study on the 3D image reconstruction in a truncated Archirnedean-like spiral geometry with a long-rectangular detector and its image characteristics
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Experimental study on the 3D image reconstruction in a truncated Archirnedean-like spiral geometry with a long-rectangular detector and its image characteristics

机译:带有长矩形检测器的截短的类似于阿肯尼迪斯的螺旋形几何图形中的3D图像重建及其图像特性的实验研究

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In this work, we performed a feasibility study on the three-dimensional (3D) image reconstruction in a truncated Archimedean-like spiral geometry with a long-rectangular detector for application to high-accurate, cost-effective dental x-ray imaging. Here an x-ray tube and a detector rotate together around the rotational axis several times and, concurrently, the detector moves horizontally in the detector coordinate at a constant speed to cover the whole imaging volume during the projection data acquisition. We established a table-top setup which mainly consists of an x-ray tube (60 kV(p), 5 mA), a narrow CMOS-type detector (198-mu m pixel resolution, 184 (W) x 1176 (H) pixel dimension), and a rotational stage for sample mounting and performed a systematic experiment to demonstrate the viability of the proposed approach to volumetric dental imaging. For the image reconstruction, we employed a compressed-sensing (CS)-based algorithm, rather than a common filtered-backprojection (FBP) one, for more accurate reconstruction. We successfully reconstructed 3D images of considerably high quality and investigated the image characteristics in terms of the image value profile, the contrast-to-noise ratio (CNR), and the spatial resolution. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们对带有长矩形检测器的截短的阿基米德螺旋状几何图形中的三维(3D)图像重建进行了可行性研究,以应用于高精度,经济高效的牙科X射线成像。在此,X射线管和检测器一起绕旋转轴旋转几次,并且同时,在投影数据获取期间,检测器以恒定的速度在检测器坐标中水平移动以覆盖整个成像体积。我们建立了一个桌面设置,主要由一个X射线管(60 kV(p),5 mA),一个窄CMOS型检测器(198微米像素分辨率,184(W)x 1176(H))组成像素尺寸),以及用于样品安装的旋转平台,并进行了系统的实验,以证明所提出的用于体积牙科成像的方法的可行性。对于图像重建,我们采用了基于压缩感知(CS)的算法,而不是通用的滤波反投影(FBP)算法,以实现更准确的重建。我们成功地重建了高质量的3D图像,并根据图像值配置文件,对比噪声比(CNR)和空间分辨率研究了图像特性。 (C)2015 Elsevier B.V.保留所有权利。

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