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牙颌面影像学检查的放射生物学风险:我们是否应该担忧?

Radiobiological risks following dentomaxillofacial imaging: should we be concerned?

机构信息

Belgian Nuclear Research Centre (SCK CEN), Radiobiology Unit, Boeretang 200, Mol, Belgium.

Morphology Group, Biomedical Research Institute, Hasselt University, Agoralaan Building C, Diepenbeek, Belgium.

出版信息

Dentomaxillofac Radiol. 2021 Sep 1;50(6):20210153. doi: 10.1259/dmfr.20210153. Epub 2021 May 14.

Abstract

OBJECTIVES

This review aimed to present studies that prospectively investigated biological effects in patients following diagnostic dentomaxillofacial radiology (DMFR).

METHODS

Literature was systematically searched to retrieve all studies assessing radiobiological effects of using X-ray imaging in the dentomaxillofacial area, with reference to radiobiological outcomes for other imaging modalities and fields.

RESULTS

There is a lot of variability in the reported radiobiological assessment methods and radiation dose measures, making comparisons of radiobiological studies challenging. Most radiological DMFR studies are focusing on genotoxicity and cytotoxicity, data for 2D dentomaxillofacial radiographs, albeit with some methodological weakness biasing the results. For CBCT, available evidence is limited and few studies include comparative data on both adults and children.

CONCLUSIONS

In the future, one will have to strive towards patient-specific measures by considering age, gender and other individual radiation sensitivity-related factors. Ultimately, future radioprotection strategies should build further on the concept of personalized medicine, with patient-specific optimization of the imaging protocol, based on radiobiological variables.

摘要

目的

本综述旨在介绍在诊断牙颌面放射学(DMFR)后前瞻性研究患者生物学效应的研究。

方法

系统检索文献,以检索评估在颌面区域使用 X 射线成像的放射生物学效应的所有研究,并参考其他成像方式和领域的放射生物学结果。

结果

报告的放射生物学评估方法和辐射剂量测量存在很大差异,使得放射生物学研究的比较具有挑战性。大多数牙颌面放射学 DMFR 研究都集中在遗传毒性和细胞毒性上,二维颌面放射照片的数据虽然存在一些使结果产生偏差的方法学弱点。对于 CBCT,现有的证据有限,很少有研究包括成人和儿童的比较数据。

结论

未来,人们将不得不通过考虑年龄、性别和其他与个体辐射敏感性相关的因素,努力实现针对患者个体的措施。最终,未来的放射防护策略应进一步建立在个性化医疗的概念之上,根据放射生物学变量,对成像方案进行患者特异性优化。

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