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使用EOS成像系统进行全脊柱检查时的职业和患者辐射暴露以及图像质量。

Occupational and patient exposure as well as image quality for full spine examinations with the EOS imaging system.

作者信息

Damet J, Fournier P, Monnin P, Sans-Merce M, Ceroni D, Zand T, Verdun F R, Baechler S

机构信息

Institute of Radiation Physics, Lausanne University Hospital, Lausanne 1007, Switzerland.

Department of Paediatrics, Division of paediatric orthopaedic, University Hospitals of Geneva, Geneva 1205, Switzerland.

出版信息

Med Phys. 2014 Jun;41(6):063901. doi: 10.1118/1.4873333.

Abstract

PURPOSE

EOS (EOS imaging S.A, Paris, France) is an x-ray imaging system that uses slot-scanning technology in order to optimize the trade-off between image quality and dose. The goal of this study was to characterize the EOS system in terms of occupational exposure, organ doses to patients as well as image quality for full spine examinations.

METHODS

Occupational exposure was determined by measuring the ambient dose equivalents in the radiological room during a standard full spine examination. The patient dosimetry was performed using anthropomorphic phantoms representing an adolescent and a five-year-old child. The organ doses were measured with thermoluminescent detectors and then used to calculate effective doses. Patient exposure with EOS was then compared to dose levels reported for conventional radiological systems. Image quality was assessed in terms of spatial resolution and different noise contributions to evaluate the detector's performances of the system. The spatial-frequency signal transfer efficiency of the imaging system was quantified by the detective quantum efficiency (DQE).

RESULTS

The use of a protective apron when the medical staff or parents have to stand near to the cubicle in the radiological room is recommended. The estimated effective dose to patients undergoing a full spine examination with the EOS system was 290 μSv for an adult and 200 μSv for a child. MTF and NPS are nonisotropic, with higher values in the scanning direction; they are in addition energy-dependent, but scanning speed independent. The system was shown to be quantum-limited, with a maximum DQE of 13%. The relevance of the DQE for slot-scanning system has been addressed.

CONCLUSIONS

As a summary, the estimated effective dose was 290 μSv for an adult; the image quality remains comparable to conventional systems.

摘要

目的

EOS(法国巴黎EOS成像公司)是一种X射线成像系统,采用狭缝扫描技术以优化图像质量和剂量之间的权衡。本研究的目的是在职业照射、患者器官剂量以及全脊柱检查的图像质量方面对EOS系统进行特性描述。

方法

通过在标准全脊柱检查期间测量放射科房间内的环境剂量当量来确定职业照射。使用代表青少年和五岁儿童的人体模型进行患者剂量测定。用热释光探测器测量器官剂量,然后用于计算有效剂量。然后将EOS系统的患者照射情况与传统放射系统报告的剂量水平进行比较。根据空间分辨率和不同的噪声贡献评估图像质量,以评估系统探测器的性能。成像系统的空间频率信号传递效率通过探测量子效率(DQE)进行量化。

结果

建议在医护人员或家长必须站在放射科房间内检查室附近时使用防护围裙。使用EOS系统进行全脊柱检查的成年患者估计有效剂量为290μSv,儿童为200μSv。调制传递函数(MTF)和噪声功率谱(NPS)是非各向同性的,在扫描方向上值更高;它们还与能量有关,但与扫描速度无关。该系统显示为量子受限,最大DQE为13%。讨论了DQE对狭缝扫描系统的相关性。

结论

总之,成年患者的估计有效剂量为290μSv;图像质量与传统系统相当。

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