性腺屏蔽在医学影像中的研究现状综述

Julie Ho, E. Seeram, Edel Doyle, Simone Roberts, John Mc Inerney
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引用次数: 0

摘要

近年来,使用性腺屏蔽的好处受到了质疑。一些专业机构已经发表立场声明,支持停止使用性腺盾牌。然而,澳大利亚的辐射监管机构迄今尚未发表评论。本文献综述旨在探讨使用铅保护的风险和益处,并建立在临床实践中使用性腺屏障的现状。方法以“医学影像与放射科学”为主题,在网上数据库中检索相关文献。关键词包括“铅保护”、“平片成像”、“铅屏蔽”、“性腺屏蔽”、“x光”、“放射照相”、“盆腔造影”、“辐射防护”、“方法”、“教育”和“性腺屏蔽”。与放射治疗有关的文章、文献综述和非英文的文章被排除在外。结果和讨论性腺屏蔽通常使用不当,尽管什么构成准确和不准确的屏蔽达成一致。屏蔽不准确既与屏蔽尺寸不合适有关,也与屏蔽位置不准确有关。回顾性研究表明,与男性相比,女性性腺屏蔽放置不准确的发生率更高。不准确的屏蔽会对患者造成影响,例如遮蔽重要的解剖和病理,如果需要重复x光来纠正定位错误,则会增加辐射剂量。盾构设计创新被确定为未来的研究领域,可以帮助克服这些错误。发现性腺屏蔽对需要定期随访成像的患者有益。这对于影响放射敏感性增加和预期寿命较长的儿童和青少年的情况尤其重要。结论研究表明,女性患者性腺盾牌定位不准确的发生率高,导致x线影像重复,患者剂量增加。然而,屏蔽已被证明对需要频繁x光检查以减少累积辐射剂量的患者有益。在监管机构的支持下,建立一个关于性腺屏障应用的标准化方案是必不可少的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current State of Gonadal Shielding in Medical Imaging: A Review
Introduction In recent times the benefits of using gonadal shielding have been brought into question. Several professional bodies have released positional statements in support of ceasing the use of gonadal shields. However, in Australia the regulatory authority for radiation has not commented to date. This literature review aims to explore the risks and benefits of using lead protection and to establish the current state of the use of gonadal shields in clinical practice. Methods A search of the literature was conducted using online databases under the subject “Medical Imaging and Radiation Sciences”. Key terms and phrases included “lead protection”, “plain film imaging”, “lead shielding”, “gonadal shielding”, “X-ray”, “radiography”, “pelvic radiography”, “radiation protection”, “methods”, “education” and “gonadal shielding”. Articles pertaining to radiation therapy, literature reviews and those not in English were excluded. Results and Discussion Gonad shields are often poorly used despite agreement of what constitutes accurate and inaccurate shielding. Inaccurate shielding relates to both inappropriate size and inaccurate positioning of shields. Retrospective studies demonstrated a higher incidence of inaccurate gonadal shield placement in females compared to males. Inaccurate shielding had implications for patients such as obscuration of important anatomy and pathology and increased radiation dose if repeat X-rays were required to correct positioning errors. Shield design innovation was identified as a future area of research that could assist with overcoming these errors. Where gonad shielding was found to be of benefit in patients with conditions that require regular follow-up imaging. This is especially important in conditions affecting children and adolescents who have increased radiosensitivity and longer life expectancy. Conclusion Studies have demonstrated high incidence of inaccurately positioned gonad shields for female patients, which leads to repeated X-ray images and increased dose to patients. However, shielding has been shown to be beneficial for patients requiring frequent X-ray examinations to reduce cumulative radiation dose. Establishing a standardised protocol regarding the application of gonadal shields, supported by regulatory agencies, is imperative.
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