Establishment of Radiation Dose Reduction Criteria for Thoracic and Abdominal CT via Systematic Spatial Resolution Evaluation

Jong-Tae Yoon, Deuk-Yong Kim, Ki Baek Lee
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Abstract

With the development of various reconstruction algorithms for CT imaging, it has become possible to perform low-dose CT examinations without compromising image quality. However, quantitative evaluation such as image noise, signal-to-noise ratio (SNR), and contrast-tonoise ratio (CNR) have been mainly used yet, while the spatial resolution and overall image quality rely on subjective assessment. Therefore, this study aimed to propose a quantitative method for evaluating spatial resolution in chest and abdominal CT scans, in order to facilitate dose reduction. For this study, a phantom was fabricated using 3D printing and scanned under chest and abdominal imaging conditions, with additional scans performed under low-dose conditions. The peak, bottom, FWHM, DFWHM, and peak-bottom were compared and analyzed. The results showed no statistically significant differences in spatial resolution parameters between all chest and abdominal protocol, with FWHM and DFWHM indicating the same distance. Even if the dose is reduced to 30 mAs in the chest CT condition and to 50 mAs in the abdominal CT condition, there will not be a big problem in terms of spatial resolution. Lastly, the indices from this study demonstrate potential as objective measures of spatial resolution when applying low-dose CT protocols.
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基于系统空间分辨率评价的胸腹CT辐射剂量降低标准的建立
随着各种CT成像重建算法的发展,在不影响图像质量的情况下进行低剂量CT检查已经成为可能。但目前主要采用图像噪声、信噪比(SNR)、对比噪声比(CNR)等定量评价,空间分辨率和整体图像质量依赖于主观评价。因此,本研究旨在提出一种定量评估胸部和腹部CT扫描空间分辨率的方法,以便于降低剂量。在这项研究中,使用3D打印制造了一个假体,并在胸部和腹部成像条件下进行扫描,在低剂量条件下进行额外扫描。对峰、底、峰whm、峰whm、峰底进行比较分析。结果显示,所有胸部和腹部方案的空间分辨率参数无统计学差异,FWHM和DFWHM表示相同的距离。即使在胸部CT情况下将剂量降低到30ma,在腹部CT情况下降低到50ma,在空间分辨率方面也不会有太大的问题。最后,本研究的指数显示了在应用低剂量CT协议时作为空间分辨率客观测量的潜力。
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Establishment of Radiation Dose Reduction Criteria for Thoracic and Abdominal CT via Systematic Spatial Resolution Evaluation A Phantom Study of 100 kVp Spectral Data Accuracy Using Iodine Density in Dual-Layer Detector CT A Study on the Optimization of Excretory Imaging in CT Urography A Study on the Comparison of VNCa and VMI+ Image Quality and Optimized Method according to kV Modulation of DECT: A Porcine Ankle Ligament Model Radiation Exposure Dose Reduction according to ECG Window Acquisition Range Setting in Coronary Artery CT Angiography
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