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An anthropomorphic phantom representing a prematurely born neonate for digital x-ray imaging using 3D printing: Proof of concept and comparison of image quality from different systems

机译:代表早产新生儿的拟人化体模用于使用3D打印进行数字X射线成像:概念验证和来自不同系统的图像质量比较

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摘要

An anthropomorphic phantom for image optimization in neonatal radiography was developed, and its usability in optimizing image acquisition and processing demonstrated. The phantom was designed to mimic a patient image of a prematurely born neonate. A clinical x-ray (neonate <1 kg) taken with an effective dose of 11 µSv on a needle-crystal storage phosphor system was retrospectively selected from anonymized images as an appropriate template representing a standard case in neonatology imaging. The low dose level used in clinical imaging results in high image noise content. Therefore, the image had to be processed using structure preserving noise reduction. Pixel values were related to printing material thickness to result in a similar attenuation pattern as the original patient including support mattress. A 3D model generating a similar x-ray attenuation pattern on an image detector as a patient was derived accounting for beam hardening and perspective, and printed using different printing technologies. Best printing quality was achieved using a laser stereolithography printer. Phantom images from different digital radiography systems used in neonatal imaging were compared. Effects of technology, image processing, and radiation dose on diagnostic image quality can be assessed for otherwise identical anthropomorphic neonatal images not possible with patient images, facilitating optimization and standardization of imaging parameters and image appearance.
机译:开发了一种用于新生儿放射线照相图像优化的拟人化体模,并证明了其在优化图像采集和处理中的可用性。该体模被设计为模仿早产新生儿的患者图像。回顾性地从匿名图像中选择以11 µSv的有效剂量在针状晶体存储磷光体系统上拍摄的临床X射线(新生儿<1 kg),作为代表新生儿医学成像标准病例的合适模板。临床成像中使用的低剂量水平导致高图像噪声含量。因此,必须使用保持噪声降低的结构来处理图像。像素值与打印材料的厚度有关,从而导致与包括支撑床垫在内的原始患者相似的衰减模式。推导了一个3D模型,该模型在患者身上的图像检测器上生成了类似的X射线衰减图,说明了光束硬化和透视,并使用不同的打印技术进行打印。使用激光立体平版印刷机可获得最佳的印刷质量。比较了新生儿成像中使用的不同数字放射成像系统的幻像。可以评估技术,图像处理和辐射剂量对诊断图像质量的影响,否则就无法为患者图像提供相同的拟人化新生儿图像,从而有助于优化和标准化成像参数和图像外观。

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