{"title":"使用 MAM-162 模体评估数字乳腺 X 射线摄影系统","authors":"A. Castillo, N. A. Roas Zúniga","doi":"10.15392/2319-0612.2024.2283","DOIUrl":null,"url":null,"abstract":"Quality controls are performed to verify the performance status of X-ray equipment in relation to image quality and patient dose. Originally, the Laboratory of Radiation Physics and Metrology (LAF-RAM) in Nicaragua had only one phantom to evaluate mammography image quality subjectively; however, under a cooperation project with the International Atomic Energy Agency (IAEA), the MAM-162 phantom was acquired for the evaluation of physical image quality. In this work a CR type digital mammography system was evaluated using the MAM-162 phantom with adaptation to a single quality control protocol based on international standards such as the German Institute for Standardization (DIN) DIN 6868-162:2013-06, the IAEA technical document TECDOC protocol No. 1958 and the European Federation of Organizations for Medical Physics (EFOMP) mammo protocol. Among the main tests performed are the evaluation of the lateral image limit of the chest wall with satisfactory results, the automatic exposure control, the Signal-to-Noise difference ratio that complies with the tolerances, in the case Ghosting and dynamic range the results of both are satisfactory, the presence of artifacts was observed when applying variance mapping, a base value of the dynamic range was also obtained. For the dosimetry, the half value layer and the determination of the Mean Glandular Dose were evaluated, which does not comply with the tolerances. The final protocol document could be validated and implemented as part of the management and service documents of the Quality Control and Monitoring Laboratory (LCM) of LAF-RAM.","PeriodicalId":505520,"journal":{"name":"Brazilian Journal of Radiation Sciences","volume":"208 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-02-21","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Evaluation of a Digital Mammography System with the MAM-162 phantom\",\"authors\":\"A. Castillo, N. A. Roas Zúniga\",\"doi\":\"10.15392/2319-0612.2024.2283\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Quality controls are performed to verify the performance status of X-ray equipment in relation to image quality and patient dose. 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引用次数: 0
摘要
进行质量控制是为了验证 X 射线设备在图像质量和病人剂量方面的性能状况。最初,尼加拉瓜辐射物理和计量实验室(LAF-RAM)只有一个模型,用于主观评估乳腺 X 射线图像质量;但是,在与国际原子能机构(IAEA)的合作项目下,获得了 MAM-162 模型,用于评估物理图像质量。在这项工作中,使用 MAM-162 模体对 CR 型数字乳腺 X 射线摄影系统进行了评估,并根据国际标准(如德国标准化协会 (DIN) DIN 6868-162:2013-06、国际原子能机构技术文件 TECDOC 第 1958 号协议和欧洲医学物理组织联合会 (EFOMP) mammo 协议)调整了单一质量控制协议。所进行的主要测试包括:胸壁横向图像极限评估,结果令人满意;自动曝光控制;信噪比符合公差要求;鬼影和动态范围的结果令人满意;应用方差映射时发现存在伪影;还获得了动态范围的基准值。在剂量测定方面,对半值层和平均腺体剂量的确定进行了评估,结果不符合公差要求。最终协议文件可作为 LAF-RAM 质量控制和监测实验室 (LCM) 管理和服务文件的一部分进行验证和实施。
Evaluation of a Digital Mammography System with the MAM-162 phantom
Quality controls are performed to verify the performance status of X-ray equipment in relation to image quality and patient dose. Originally, the Laboratory of Radiation Physics and Metrology (LAF-RAM) in Nicaragua had only one phantom to evaluate mammography image quality subjectively; however, under a cooperation project with the International Atomic Energy Agency (IAEA), the MAM-162 phantom was acquired for the evaluation of physical image quality. In this work a CR type digital mammography system was evaluated using the MAM-162 phantom with adaptation to a single quality control protocol based on international standards such as the German Institute for Standardization (DIN) DIN 6868-162:2013-06, the IAEA technical document TECDOC protocol No. 1958 and the European Federation of Organizations for Medical Physics (EFOMP) mammo protocol. Among the main tests performed are the evaluation of the lateral image limit of the chest wall with satisfactory results, the automatic exposure control, the Signal-to-Noise difference ratio that complies with the tolerances, in the case Ghosting and dynamic range the results of both are satisfactory, the presence of artifacts was observed when applying variance mapping, a base value of the dynamic range was also obtained. For the dosimetry, the half value layer and the determination of the Mean Glandular Dose were evaluated, which does not comply with the tolerances. The final protocol document could be validated and implemented as part of the management and service documents of the Quality Control and Monitoring Laboratory (LCM) of LAF-RAM.