首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >Estimation of mean-glandular dose from monitoring breast entrance skin air kerma using a high sensitivity metal oxide semiconductor field effect transistor (MOSFET) dosimeter system in mammography.
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Estimation of mean-glandular dose from monitoring breast entrance skin air kerma using a high sensitivity metal oxide semiconductor field effect transistor (MOSFET) dosimeter system in mammography.

机译:在乳腺摄影中使用高灵敏度金属氧化物半导体场效应晶体管(MOSFET)剂量计系统,通过监测乳房入口皮肤空气比释动能来估计平均腺体剂量。

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Estimation of mean-glandular dose (MGD) has been investigated in recent years due to the potential risks of radiation-induced carcinogenesis associated with the mammographic examination for diagnostic radiology. In this study, a new technique for immediate readout of breast entrance skin air kerma (BESAK) using high sensitivity MOSFET dosimeter after mammographic projection was introduced and a formula for the prediction of tube output with exposure records was developed. A series of appropriate conversion factors was applied to the MGD determination from the BESAK. The study results showed that signal response of the high sensitivity MOSFET exhibited excellent linearity within mammographic dose ranges, and that the energy dependence was less than 3% for each anode/filter combination at the tube potentials 25-30kV. Good agreement was observed between the BESAK and the tube exposure output measurement for breasts thicker than 30mm. In addition, the air kerma estimated from our prediction formula provided sufficient accuracy for thinner breasts. The average MGD from 120 Asian females was 1.5mGy, comparable to other studies. Our results suggest that the high sensitivity MOSFET dosimeter system is a good candidate for immediately readout of BESAK after mammographic procedures.
机译:近年来,由于与放射线钼靶检查相关的放射线致癌作用的潜在风险,近年来已对平均腺体剂量(MGD)的估计进行了研究。在这项研究中,介绍了一种在乳腺X线摄影投影后使用高灵敏度MOSFET剂量计立即读出乳房入口皮肤空气比释动能(BESAK)的新技术,并开发了一种通过曝光记录预测管输出的公式。将一系列适当的转换因子应用于来自BESAK的MGD测定。研究结果表明,在乳腺摄影剂量范围内,高灵敏度MOSFET的信号响应表现出出色的线性,并且在25-30kV的管电位下,每种阳极/过滤器组合的能量依赖性小于3%。对于厚于30mm的乳房,BESAK与管暴露输出测量之间观察到良好的一致性。此外,根据我们的预测公式估算出的空气比释动能为较薄的乳房提供了足够的准确性。与其他研究相比,来自120名亚洲女性的平均MGD为1.5mGy。我们的结果表明,高灵敏度MOSFET剂量计系统非常适合在乳腺X线摄影程序后立即读取BESAK。

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