评估高折射率聚合物的光学和辐射防护参数

Mehmet Kirbiyik, Sevim Bi̇li̇ci̇
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摘要

通过紫外/可见光谱法检测了 MR-8 高指数镜片的处方和非处方(平光)样品的光学特性。结果表明,两种 MR-8 镜片样品的透光率均超过 90%,在人眼最敏感的波长(约 550 纳米)上,有度数和无度数样品的透光率分别为 83.437% 和 84.602%。就视觉质量而言,预计可见光透射率会很高,而紫外线透射率会很低。非常重要的是,测试的有度数和无度数有机 MR-8 镜片的透光率都不低于约 398 纳米。这意味着这种镜片材料即使没有镀膜,也能抵御 UVA 和 UVB 射线。减少镜片的剂量也很重要,因为镜片是对辐射敏感的组织。在这项研究中,使用基于网络的 XCOM 程序计算了 MR-8 和 Ormix 镜片材料在 0.15-2.00 MeV 能量范围内的质量吸收系数。根据获得的 MAC 值计算出 LAC、HVL、TVL、MFP、RPE 和 TF 值。在能量低于 0.05 MeV 时,MR-8 和 Ormix 镜头的最大 MAC 值分别为 0.974 和 4.416。MR-8 镜片的 RPE 和 TF 值分别为 0.807-16.235%、0.996-0.992%,Ormix 镜片的 RPE 和 TF 值分别为 0.862-55.233%、0.448-0.991%。结果表明,在光电相互作用占主导地位的区域,Ormix 透镜的光子吸收能力相对较好。这项研究对于确定制造高折射率镜片所用材料的光学和核辐射参数,以及研究其在减少目镜剂量方面的有效性也具有重要意义。
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Evaluation of Optical and Radiation Protection Parameters of High Refractive Index Polymers
The optical properties of the prescription and non-prescription (plano) samples of the MR-8 high index lens were examined by UV/VIS spectrometry. The results showed that the light transmittance of the two MR-8 lens samples examined was over 90%, and the transmittance at the wavelength (~550nm) to which the human eye is most sensitive was 83.437% and 84.602% for the prescription and non-prescription samples, respectively. In terms of quality of vision, it is expected that the visible light transmittance will be high and the ultraviolet light transmittance will be minimal. It is very important that both the prescription and non-prescription organic MR-8 lenses tested have no transmittance below approximately 398nm. This means that this lens material protects against UVA and UVB rays, even though it is uncoated. It is also important to reduce the dose to the lens, which is a radiosensitive tissue. In the study, the mass absorption coefficients of MR-8 and Ormix lens materials in the 0.15-2.00 MeV energy range were calculated using the web-based XCOM programme. LAC, HVL, TVL, MFP, RPE and TF values were calculated from the MAC values obtained. At energies below 0.05 MeV, the maximum MAC value was 0.974 and 4.416 for the MR-8 and Ormix lenses, respectively. The RPE and TF values were 0.807-16.235%, 0.996-0.992% for the MR-8 lens and 0.862-55.233%, 0.448-0.991% for the Ormix lens. The results showed that the photon absorption ability of the Ormix lens is relatively better in the region where the photoelectric interaction is dominant. This research is also important in terms of determining the optical and nuclear radiation parameters of the material used in the manufacture of high index lenses and investigating its effectiveness in reducing the dose to the eyepiece.
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