首页> 外文期刊>Physics in medicine and biology. >Substituting gelatine with Pluronic F-127 matrix in 3D polymer gel dosimeters can improve nuclear magnetic resonance, thermal and optical properties
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Substituting gelatine with Pluronic F-127 matrix in 3D polymer gel dosimeters can improve nuclear magnetic resonance, thermal and optical properties

机译:用Pluronic F-127基质用明胶用3D聚合物凝胶剂量计可以改善核磁共振,热和光学性能

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This work discusses the substitution of a gelatine physical gel matrix with a matrix made of poly(ethylene oxide)-block-poly(propylene oxide)-block-poly(ethylene oxide) (Pluronic F-127) in five 3D radiotherapy polymer gel dosimeters: MAGAT, PAGAT, NIPAM,VIPAR(nd) (VIP) and VIPAR(CT) (VIC). The current research outcomes showed that not each polymer gel dosimeter could be manufactured with Pluronic F-127. Two of the polymer gel dosimeters (PAGAT and VIP) containing the Pluronic F-127 matrix allowed for some proper dose response for radiotherapy dosimetry (a response to a dose range of e.g. 0-50 Gy). The new best performing Pluronic-based polymer gel dosimeters were characterised by improved nuclear magnetic resonance properties, when being compared to gels with gelatine matrix at the same monomer content. These are: (i) a similar to 33% higher dose sensitivity; (ii) a comparable or slightly higher linear and dynamic dose range and (iii) a lower (new VIP composition, VIP3) or equivocal (new PAGAT composition, PAGAT2-Pluronic) dose threshold. However, there might be optimised gelatine based polymer dosimeters demonstrating even better sensitivity. UV-Vis spectrophotometry measurements revealed that Pluronic matrices ensure six-times lower (VIP3-Pluronic) and eight-times lower (PAGAT2-Pluronic) absorbance (at 400 nm) of non-irradiated gels compared to gelatine matrices, which makes the new polymer gel dosimeters optically improved in comparison to their corresponding gelatine-based compositions. The differences in absorption reduce for higher wavelengths. Differential scanning calorimetry measurements revealed the following temperature stability ranges for the gels: (i) VIP with gelatine matrix: 0 degrees C-26 degrees C, (ii) VIP3 with Pluronic matrix: 13.8 degrees C-55.2 degrees C, (iii) PAGAT2 with gelatine matrix: 0 degrees C-80 degrees C and (iv) PAGAT2 with Pluronic matrix: 21.4 degrees C-55.2 degrees C. In conclusion, Pluronic F-127 is an attractive co-polymer to serve as a substitute for the gelatine matrix in some 3D polymer gel dosimeters.
机译:该工作讨论了用聚(环氧乙烷)-Block-poly(环氧丙烷)-block-poly(环氧丙烷)(环氧丙烷)(Murlonic F-127)制成的基质的基质的替代物中的五个放射治疗聚合物凝胶剂量计中的基质替代凝胶物理凝胶基质:Magat,Pagat,NiPam,Vipar(ND)(VIP)和vipar(CT)(VIC)。目前的研究结果表明,不是每个聚合物凝胶剂量计可以用Pluronic F-127制造。含有Pluronic F-127基质的两种聚合物凝胶剂量计(PAGAT和VIP)允许一些适当的剂量响应进行放射疗法剂量测定(响应于例如0-50 Gy的剂量范围)。当与在相同单体含量的明胶基质的凝胶相比,新的最佳性能的Pluronic基聚合物凝胶剂量计的特征在于改善的核磁共振性能。这些是:(i)类似于剂量敏感性的33%; (ii)相当或略高的线性和动态剂量范围和(iii)较低(New VIP组合物,VIP3)或等圆锥(新的PAGAT组合物,PAGAT2-PLURONIC)剂量阈值。然而,可能有优化的基于明胶基聚合物剂量计,展示了更好的敏感性。 UV-Vis分光光度法测量显示,与明胶基质相比,Pluronic族矩阵确保了六次(VIP3 -Pluronic)和非照射凝胶的八倍(Pagat2-Pluronic)吸光度(在400nm处),这使得新的聚合物与它们相应的基于明胶的组合物相比,凝胶剂量计光学改善。吸收的差异降低了更高波长的差异。差分扫描量热测量测量显示了凝胶的以下温度稳定性范围:(i)vip具有明胶基质:0℃c-26℃,(ii)VIP3,具有pluronic矩阵:13.8℃-55.2℃,(iii)pagat2含明胶基质:0℃-80℃和(IV)PAGAT2,具有PLURONIC矩阵:21.4摄氏度C-55.2℃。总之,PLURONIC F-127是一种有吸引力的共聚物,用作明胶基质的替代品在一些3D聚合物凝胶剂量计中。

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