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利用光谱成形技术降低儿科鼻窦非增强 CT 的辐射剂量。

Radiation dose reduction using spectral shaping in pediatric non-contrast sinus CT.

机构信息

Radiology, University of Colorado, Anschutz Medical Campus, 13001 E 17Th Pl, Aurora, CO, USA.

Radiology, Children's Hospital Colorado, 13123 E 16Th Ave, Aurora, CO, USA.

出版信息

Pediatr Radiol. 2023 Sep;53(10):2069-2078. doi: 10.1007/s00247-023-05699-2. Epub 2023 Jun 21.

Abstract

BACKGROUND

CT is the standard imaging technique to evaluate pediatric sinuses. Given the potential risks of radiation exposure in children, it is important to reduce pediatric CT dose and maintain image quality.

OBJECTIVE

To study the utility of spectral shaping with tin filtration to improve dose efficiency for pediatric sinus CT exams.

MATERIALS AND METHODS

A head phantom was scanned on a commercial dual-source CT using a conventional protocol (120 kV) and a proposed 100 kV with a 0.4-mm tin filter (Sn100 kV) protocol for comparison. Entrance point dose (EPD) of eye and parotid gland region was measured by an ion chamber. Sixty pediatric sinus CT exams (33 acquired with 120 kV, 27 acquired with Sn100 kV) were retrospectively collected. All patient images were objectively measured for image quality and blindly reviewed by 4 pediatric neuroradiologists for overall noise, overall diagnostic quality, and delineation of 4 critical paranasal sinus structures, using a 5-point Likert scale.

RESULTS

Phantom CTDIvol from Sn100 kV is 4.35 mGy, compared to CTDIvol of 5.73 mGy from 120 kV at an identical noise level. EPD of sensitive organs decreases in Sn100 kV (e.g., right eye EPD 3.83±0.42 mGy), compared to 120 kV (5.26±0.24 mGy). Patients in the 2 protocol groups were age and weight (unpaired T test P>0.05) matched. The patient CTDIvol of Sn100 kV (4.45±0.47 mGy) is significantly lower than 120 kV (5.56±0.48 mGy, unpaired T test P<0.001). No statistically significant difference for any subjective readers' score (Wilcoxon test P>0.05) was found between the two groups, indicating proposed spectral shaping provides equivalent diagnostic image quality.

CONCLUSION

Phantom and patient results demonstrate that spectral shaping can significantly reduce radiation dose for non-contrast pediatric sinus CT without compromising diagnostic quality.

摘要

背景

CT 是评估小儿鼻窦的标准成像技术。鉴于儿童辐射暴露的潜在风险,降低小儿 CT 剂量并保持图像质量非常重要。

目的

研究使用锡滤光片进行光谱塑形以提高小儿鼻窦 CT 检查的剂量效率。

材料和方法

使用商业双源 CT 对头模型进行扫描,比较常规协议(120kV)和建议的 100kV 加 0.4mm 锡滤光片(Sn100kV)协议。通过离子室测量眼和腮腺区域的入射点剂量(EPD)。回顾性收集了 60 例小儿鼻窦 CT 检查(33 例采用 120kV 采集,27 例采用 Sn100kV 采集)。所有患者的图像均进行客观测量,以评估图像质量,并由 4 名小儿神经放射科医生对整体噪声、整体诊断质量以及 4 个关键副鼻窦结构的勾画进行盲法评估,采用 5 分 Likert 量表。

结果

Sn100kV 的 CTDIvol 为 4.35mGy,与噪声水平相同的 120kV 的 CTDIvol 5.73mGy 相比。在 Sn100kV 中,敏感器官的 EPD 降低(例如,右眼 EPD 为 3.83±0.42mGy),而 120kV 中则为 5.26±0.24mGy。两组患者的年龄和体重(未配对 T 检验 P>0.05)相匹配。Sn100kV 的患者 CTDIvol(4.45±0.47mGy)明显低于 120kV(5.56±0.48mGy,未配对 T 检验 P<0.001)。两组间任何主观读者评分(Wilcoxon 检验 P>0.05)均无统计学差异,表明建议的光谱塑形可提供等效的诊断图像质量。

结论

体模和患者的结果表明,光谱塑形可显著降低非对比小儿鼻窦 CT 的辐射剂量,同时不影响诊断质量。

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