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开发并评估使用环保型屏蔽复合材料的医疗辐射减少霜的性能。

Development and performance evaluation of medical radiation-reducing creams using eco-friendly radiation-shielding composites.

机构信息

Department of Biomedical Engineering, Keimyung University Department of Medical Informatics, School of Medicine, Keimyung University, Daegu, Korea.

出版信息

Sci Rep. 2024 Sep 3;14(1):20424. doi: 10.1038/s41598-024-71031-z.

Abstract

To ensure the safety of medical personnel in healthcare organizations, radiation-shielding materials like protective clothing are used to protect against low-dose radiation, such as scattered rays. The extremities, particularly the hands, are the most exposed to radiation. New materials that can be directly coated onto the skin would be more cost-effective, efficient, and convenient than gloves. We developed protective creams using eco-friendly shielding materials, including barium sulfate, bismuth oxide, and ytterbium oxide, to avoid harmful effects of heavy metals like lead, and tested their skin-protective effects. Particularly, the radiation-shielding effect of ytterbium oxide was compared with that of the other materials. As shielding material dispersion and layer thickness greatly affect the efficacy of radiation-shielding creams, we assessed dispersion in terms of the weight percentage (wt%). The effective radiation energy was reduced by 20% with a 1.0-mm increase in cream thickness. Ytterbium oxide had a higher radiation-shielding rate than the other two materials. A 28% difference in protective effect was observed with varying wt%, and the 45 wt% cream at 63.4 keV radiation achieved a 61.3% reduction rate. Higher content led to a more stable incident energy-reducing effect. In conclusion, ytterbium oxide shows potential as a radiation-shielding material for creams.

摘要

为确保医疗机构医护人员的安全,使用防护服等辐射屏蔽材料来防护低剂量辐射,如散射射线。四肢,特别是手部,最容易受到辐射。与手套相比,可直接涂覆在皮肤上的新材料在成本效益、效率和便利性方面更具优势。我们使用包括硫酸钡、氧化铋和氧化镱在内的环保屏蔽材料开发了防护霜,以避免重金属如铅的有害影响,并测试了它们的皮肤保护效果。特别是,比较了氧化镱与其他材料的屏蔽效果。由于屏蔽材料的分散和层厚度极大地影响了辐射屏蔽霜的效果,我们根据重量百分比(wt%)评估了分散度。随着霜层厚度增加 1.0 毫米,有效辐射能量减少了 20%。氧化镱的屏蔽率高于其他两种材料。随着 wt%的变化,防护效果差异达 28%,63.4keV 辐射下 45wt%的霜剂达到了 61.3%的降低率。含量越高,减少入射能量的效果越稳定。综上所述,氧化镱有望成为一种辐射屏蔽材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0041/11371934/dafc510b9b04/41598_2024_71031_Fig1_HTML.jpg

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