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Fricke gel dosimeter with improved sensitivity for low‐dose‐level measurements

机译:Fricke凝胶剂量计具有更高的灵敏度适用于低剂量水平的测量

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摘要

Fricke solution has a wide range of applications as radiation detector and dosimetry. It is particularly appreciated in terms of relevant comparative advantages, like tissue‐equivalence when prepared in aqueous media like gel matrix, continuous mapping capability, independence of dose rate and incident direction, as well as linear dose response. This work presents the development and characterization of an improved Fricke gel system, based on modified chemical compositions, making possible its application in clinical radiology due to its improved sensitivity. Properties of standard Fricke gel dosimeter for high‐dose levels are used as a starting point, and suitable chemical modifications are introduced and carefully investigated in order to attain high resolution for low‐dose ranges, like those corresponding to radiology interventions. The developed Fricke gel radiation dosimeter system achieves the expected typical dose‐dependency, showing linear response in the dose range from 20 up to 4000 mGy. Systematic investigations including several chemical compositions are carried out in order to obtain an adequate dosimeter response for low‐dose levels. A suitable composition from among those studied is selected as a good candidate for low‐dose‐level radiation dosimetry consisting of a modified Fricke solution fixed to a gel matrix containing benzoic acid along with sulfuric acid, ferrous sulfate, Xylenol orange, and tridistilled water. Dosimeter samples are prepared in standard vials for in‐phantom irradiation and further characterization by spectrophotometry measuring visible light transmission and absorbance before and after irradiation. Samples are irradiated using typical X‐ray tubes for radiology and calibrated Farmer‐type ionization chamber is used as reference to measure dose rates inside phantoms at vial locations. Once sensitive material composition is optimized, dose‐response curves show significant improvement regarding overall sensitivity for low dose levels. The aim of this work consists of implementing the optimized gel dosimeter to perform direct measurements of absorbed dose in samples irradiated during microcomputed tomography scanning in order to preliminary assess dose levels for further scanning of small animals for further applications in veterinary and paleontology. As a first attempt, dose distributions were measured in water‐equivalent phantoms having dimensions comparable to small animals, 100 to 1000 cm3, approximately. According to the obtained results, it is found that the proposed method shows satisfactory reliability and adequate performance for a promising gel dosimetry system.PACS number(s): 87.53.Bn, 87.57.uq, 87.59.‐e
机译:Fricke解决方案具有广泛的应用,例如辐射探测器和剂量测定。在相关的比较优势方面尤其值得赞赏,例如在水性介质(如凝胶基质)中制备时的组织等效性,连续测图能力,剂量率和入射方向的独立性以及线性剂量响应。这项工作基于改进的化学成分,提出了一种改进的Fricke凝胶系统的开发和特性,由于其灵敏度提高,使其在临床放射学中的应用成为可能。以高剂量的标准Fricke凝胶剂量计的性能为起点,并引入了适当的化学修饰方法,并进行了仔细研究,以实现低剂量范围的高分辨率,例如与放射学干预相对应的那些。发达的Fricke凝胶辐射剂量计系统达到了预期的典型剂量依赖性,在20至4000 mGy的剂量范围内显示出线性响应。为了获得足够的剂量计对低剂量水平的反应,进行了包括几种化学成分在内的系统研究。从所研究的化合物中选择一种合适的成分作为低剂量辐射剂量法的良好候选者,该成分由修饰的Fricke溶液组成,该溶液固定在含有苯甲酸,硫酸,硫酸亚铁,二甲苯酚橙和三蒸馏水的凝胶基质上。剂量计样品在标准小瓶中制备,用于幻像内辐射,并通过分光光度法测量辐射前后的可见光透射率和吸光度来进一步表征。使用典型的X射线管对样品进行放射线照射,并使用经过校准的Farmer型电离室作为参考,以测量样品瓶位置的体模内部的剂量率。一旦敏感材料的成分得到优化,剂量响应曲线就会显示出针对低剂量水平的整体灵敏度的显着改善。这项工作的目的在于实施优化的凝胶剂量计,以直接测量在微计算机断层扫描中辐照的样品中的吸收剂量,以便初步评估剂量水平,以便进一步扫描小型动物,以进一步应用于兽医和古生物学。作为首次尝试,在具有相当于小型动物尺寸约100至1000 cm 3 的水等效体模中测量剂量分布。根据获得的结果,发现所提出的方法对于有希望的凝胶剂量测定系统显示出令人满意的可靠性和足够的性能.PACS数:87.53.Bn,87.57.uq,87.59.-e

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