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Influencing Factors on Reproducibility and Stability of MRI NIPAM Polymer Gel Dosimeter

机译:MRI NIPAM聚合物凝胶剂量计可重复性和稳定性的影响因素

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Introduction At present, the polymer gel dosimeter is considered to be the best possible dosimeter for measuring 3-dimesional radiation dose distribution in radiotherapy. These gels are normally toxic; therefore, manufacturing, handling and discarding them require special attention. In order to find less toxic recipe, N-isopropyle acrylamide polymer gel (NIPAM) was introduced. In this study, the reproducibility and stability of NIPAM polymer gel dose response together with some influencing factors related to MR imaging were studied. Methods The NIPAM gel was prepared according to a method, described by senden et al in 2006. The gels were irradiated approximately 2 h after manufacturing and MR images of the gel were made 24 h after irradiation. The effects of different batches, post-irradiation time and the MRI room temperature on reproducibility and stability of polymer gel dose response were explored by analyzing the NMR response (R2) of the gel. Results In a fixed temperature, the response of the gel was found to be stable 24 h after irradiation. The results showed that the dose response of the NIPAM polymer gel is highly reproducible in the same and different batches of chemical. No inhomogeneity was observed for magnetic fields in the specified position of measurements and 5?°C fluctuation was recorded for MRI room temperature. Conclusion Fluctuation in MRI room temperature necessitates that stringent attention to be paid to controlling the gel temperature at the time of imaging. The new formulation of polymer gel ensures stability of the gelsa?? spatial resolution and makes it a suitable dosimeter for distant or remote measurements.
机译:引言目前,聚合物凝胶剂量计被认为是测量放射治疗中3维辐射剂量分布的最佳剂量计。这些凝胶通常是有毒的。因此,制造,处理和丢弃它们需要特别注意。为了找到毒性较小的配方,引入了N-异丙基丙烯酰胺聚合物凝胶(NIPAM)。在这项研究中,研究了NIPAM聚合物凝胶剂量反应的重现性和稳定性以及与MR成像相关的一些影响因素。方法按照Senden等人在2006年描述的方法制备NIPAM凝胶。在制造后约2小时照射凝胶,并在照射后24小时制作MR图像。通过分析凝胶的NMR响应(R2),探索了不同批次,照射后时间和MRI室温对聚合物凝胶剂量响应的可重复性和稳定性的影响。结果在固定的温度下,发现辐照后24小时凝胶的响应是稳定的。结果表明,在相同批次和不同批次的化学药品中,NIPAM聚合物凝胶的剂量响应均可高度重现。在指定的测量位置没有观察到磁场的不均匀性,并且在MRI室温下记录到5?C的波动。结论MRI室温波动需要在成像时严格注意控制凝胶温度。聚合物凝胶的新配方可确保凝胶的稳定性。空间分辨率,使其成为适合远程或远程测量的剂量计。

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