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采用狭缝扫描数字射线摄影的低剂量全脊柱成像:一项体模研究。

Low-dose whole-spine imaging using slot-scan digital radiography: a phantom study.

机构信息

Suzuka University of Medical Science, Graduate School of Health Science Division of Health Science, 1001-1,Kishioka, Suzuka, Mie, 510-0293, Japan.

Graduate School of Health Science, Suzuka University of Medical Science, 1001-1, Kishioka, Suzuka, Mie, 510-0293, Japan.

出版信息

BMC Med Imaging. 2023 Jan 30;23(1):17. doi: 10.1186/s12880-023-00971-1.

Abstract

BACKGROUND

Slot-scan digital radiography (SSDR) is equipped with detachable scatter grids and a variable copper filter. In this study, this function was used to obtain parameters for low-dose imaging for whole-spine imaging.

METHODS

With the scatter grid removed and the beam-hardening (BH) filters (0.0, 0.1, 0.2, or 0.3 mm) inserted, the tube voltage (80, 90, 100, 110, or 120 kV) and the exposure time were adjusted to 20 different parameters that produce equivalent image quality. Slot-scan radiographs of an acrylic phantom were acquired with the set parameters, and the optimal parameters (four types) for each filter were determined using the figure of merit. For the four types of parameters obtained in the previous section, SSDR was performed on whole-spine phantoms by varying the tube current, and the parameter with the lowest radiation dose was determined by visual evaluation.

RESULTS

The parameters for each filter according to the FOM results were 90 kV, 400 mA, and 2.8 ms for 0.0 mm thickness; 100 kV, 400 mA, and 2.0 ms for 0.1 mm thickness; 100 kV, 400 mA, and 2.8 ms for 0.2 mm thickness; and 110 kV, 400 mA, and 2.2 ms for 0.3 mm thickness. Visual evaluation of the varying tube currents was performed using these four parameters when the BH filter thicknesses were 0.0, 0.1, 0.2, and 0.3 mm. The entrance surface dose was 59.44 µGy at 90 kV, 125 mA, and 2.8 ms; 57.39 µGy at 100 kV, 250 mA, and 2.0 ms; 46.89 µGy at 100 kV, 250 mA, and 2.8 ms; and 39.48 µGy at 110 kV, 250 mA, and 2.2 ms, indicating that the 0.3-mm BH filter was associated with the minimum dose.

CONCLUSION

Whole-spine SSDR could reduce the dose by 79% while maintaining the image quality.

摘要

背景

槽式扫描数字射线摄影(SSDR)配备可拆卸的散射格栅和可变铜滤波器。在这项研究中,利用该功能获得了整个脊柱成像的低剂量成像参数。

方法

去除散射格栅,并插入不同厚度的(0.0、0.1、0.2 或 0.3mm)束硬化(BH)滤波器,调节管电压(80、90、100、110 或 120kV)和曝光时间,以获得 20 种不同的参数,以产生相同的图像质量。使用设定的参数获取亚克力体模的槽式射线照片,使用符合度量标准确定每种滤波器的最佳参数(四种类型)。在前一部分中获得的四种类型的参数中,通过改变管电流在整个脊柱体模上进行 SSDR,通过视觉评估确定辐射剂量最低的参数。

结果

根据 FOM 结果,每种滤波器的参数为 0.0mm 厚时为 90kV、400mA 和 2.8ms;0.1mm 厚时为 100kV、400mA 和 2.0ms;0.2mm 厚时为 100kV、400mA 和 2.8ms;0.3mm 厚时为 110kV、400mA 和 2.2ms。当 BH 滤波器厚度分别为 0.0、0.1、0.2 和 0.3mm 时,使用这四个参数对变化的管电流进行视觉评估。90kV、125mA 和 2.8ms 时的入口表面剂量为 59.44µGy;100kV、250mA 和 2.0ms 时为 57.39µGy;100kV、250mA 和 2.8ms 时为 46.89µGy;110kV、250mA 和 2.2ms 时为 39.48µGy,这表明 0.3mm BH 滤波器与最小剂量相关。

结论

整个脊柱 SSDR 可以在保持图像质量的同时将剂量降低 79%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93ff/9885656/5f52e6a9776d/12880_2023_971_Fig1_HTML.jpg

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