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Reduction in Irradiation Dose in Aperture Coded Enhanced Computed Tomography Imager Using Super-Resolution Techniques

机译:利用超分辨率技术孔径编码增强计算断层摄影器中的辐照剂量减少

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摘要

One of the main concerns regarding medical imaging is the danger tissue’s ionizing due to the applied radiation. Many medical procedures are based on this ionizing radiation (such as X-rays and Gamma radiation). This radiation allows the physician to perform diagnosis inside the human body. Still, the main concern is stochastic effects to the DNA, particularly the cause of cancer. The radiation dose endangers not only the patient but also the medical staff, who might be close to the patient and be exposed to this dangerous radiation in a daily manner. This paper presents a novel concept of radiation reduced Computed Tomography (CT) scans. The proposed concept includes two main methods: minification to enhance the energy concertation per pixel and subpixel resolution enhancement, using shifted images, to preserve resolution. The proposed process uses several pinhole masks as the base of the imaging modality. The proposed concept was validated numerically and experimentally and has demonstrated the capability of reducing the radiation efficiency by factor 4, being highly significant to the world of radiology and CT scans. This dose reduction allows a safer imaging process for the patient and the medical staff. This method simplifies the system and improves the obtained image quality. The proposed method can contribute additively to standard existing dose reduction or super-resolution techniques to achieve even better performance.
机译:关于医学成像的主要问题之一是由于施加的辐射引起的危险组织的电离。许多医疗程序基于该电离辐射(例如X射线和γ辐射)。这种辐射允许医生在人体内进行诊断。尽管如此,主要关切是对DNA的随机效应,特别是癌症的原因。辐射剂量不仅危及患者,而且危及医务人员,他们可能靠近患者,并以日常方式暴露在这种危险的辐射。本文提出了一种新颖的辐射概念,减少了计算断层扫描(CT)扫描。所提出的概念包括两种主要方法:缩小以增强每个像素和子像素分辨率增强的能量响应,以使用移位图像来保持分辨率。所提出的过程使用几个针孔掩模作为成像模态的基础。拟议的概念在数值和实验上验证,并证明了通过因子4降低辐射效率的能力,对放射学和CT扫描的世界来说是非常重要的。这种剂量降低允许患者和医务人员进行更安全的成像过程。该方法简化了系统并提高了所获得的图像质量。所提出的方法可以对标准的现有剂量减少或超分辨率技术进行贡献,以实现更好的性能。

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