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Investigation of tetrakis hydroxymethyl phosphonium chloride as an antioxidant for use in x-ray computed tomography polyacrylamide gel dosimetry

机译:用于X射线计算机断层扫描聚丙烯酰胺凝胶剂量测定的抗氧化剂四氯化羟甲基phospho的研究

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Of the antioxidants used to scavenge oxygen in polymer gel dosimeters, tetrakis (hydroxymethyl) phosphonium chloride (THPC) has been shown to hold great promise due to its rapid oxygen scavenging abilities. In this study we (a) investigate the use of THPC as an antioxidant for polyacrylamide gel (PAGAT) dosimeters used in conjunction with x-ray computed tomography (CT) and (b) work to establish the reaction mechanisms of THPC with the polymer gel constituents. We establish the dose response reproducibility of PAGAT dosimeters when imaged with CT and show that PAGAT dosimeters exhibit highly reproducible dose responses for a range of irradiation times post gel manufacture (2-6 h) and CT imaging times post gel irradiation (1-5 days). The THPC concentration within the gel leading to a maximized dose response and minimized O-2 inhibition of polymerization is found to be similar to 4.5 mM. We further assess the stability of PAGAT dosimeters by investigating the reactions of THPC with the individual gel constituents. The importance of utilizing deionized water in polymer gel manufacture is noted. We show that, while THPC remains unreactive with acrylamide and bis-acrylarnide under unirradiated conditions, THPC can react with gelatin to increase the cross-linking of the gelatin matrix in unirradiated dosimeters. THPC reactions with gelatin can lead to the lower observed dose sensitivity of PAGAT (similar to 0.36 +/- 0.04 H Gy(-1)) as compared to polyacrylamide gels manufactured under anoxic conditions (similar to 0.83 +/- 0.03 H Gy(-1)). The reactions of THPC which lead to 02 scavenging, and potential reactions of THPC with other gel constituents, are proposed.
机译:在聚合物凝胶剂量计中用于清除氧气的抗氧化剂中,四(羟甲基)氯化chloride(THPC)由于具有快速清除氧气的能力而显示出广阔的前景。在这项研究中,我们(a)研究了THPC作为聚丙烯酰胺凝胶(PAGAT)剂量计的抗氧化剂的用途,该剂量计与X射线计算机断层扫描(CT)结合使用,并且(b)致力于建立THPC与聚合物凝胶的反应机理成分。我们建立了用CT成像时PAGAT剂量计的剂量响应可重复性,并显示了PAGAT剂量计在凝胶制造后的照射时间(2-6小时)和凝胶辐照后的CT成像时间(1-5天)范围内显示出高度可重复的剂量响应)。凝胶中的THPC浓度导致最大的剂量响应和最小的O-2聚合抑制作用,类似于4.5 mM。我们通过研究THPC与单个凝胶成分的反应,进一步评估PAGAT剂量计的稳定性。注意到在聚合物凝胶制造中利用去离子水的重要性。我们显示,尽管THPC在未辐照的条件下仍与丙烯酰胺和双丙烯酰胺不反应,但THPC可以与明胶反应,以增加未辐照剂量计中明胶基质的交联。与在无氧条件下生产的聚丙烯酰胺凝胶(类似于0.83 +/- 0.03 H Gy(-)相比,THPC与明胶的反应可导致观察到的PAGAT的剂量敏感性较低(类似于0.36 +/- 0.04 H Gy(-1))。 1))。提出了导致清除02的THPC的反应,以及THPC与其他凝胶成分的潜在反应。

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