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Radiochromic and radiofluorogenic 3D solid polymer dosimeter; effect of the photoinitiator

机译:放射褐色和辐射氟荧光3D固体聚合物剂量计; 光引发剂的影响

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摘要

AbstractDue to the recent increase in the complexity of external radiotherapy treatments, there is a need for a dosimeter capable of rendering a 3D dose profile to verify the absorbed dose with high spatial resolution. We are developing a solid and moldable 3D dosimeter material with the objective of determining the absorbed dose by measuring its fluorescence instead of the absorbance, which is a more established method. Measuring fluorescence could potentially provide higher sensitivity and spatial resolution, which is critical for 3D dosimetry. In this study, absorbance and fluorescence responses to gamma radiation are presented for doses up to 1?kGy. Since the material is cured by a photopolymerization process, the effect of the photoinitiator is also analyzed.Highlights?Fluorescence response is strong enough to be used.?Absorbance and fluorescence responses increase with the absorbed dose.?The water equivalent material is cured in the desired form by a photopolymerization process.
机译:<![CDATA [ 抽象 由于近期外部放射治疗治疗的复杂性增加,需要一种能够渲染的剂量计3D剂量型材以验证具有高空间分辨率的吸收剂量。我们正在开发一种固体和可模的3D剂量计材料,其目的是通过测量其荧光而不是吸光度来确定吸收剂量,这是一种更建立的方法。测量荧光可能提供更高的灵敏度和空间分辨率,这对于3D剂量来说至关重要。在本研究中,给予γ辐射的吸光度和荧光反应,适用于1?KGY的剂量。由于材料通过光聚合过程固化,因此还分析了光引发剂的效果。 突出显示 < ce:para id =“p0010”视图=“全部”>荧光响应足以使用。 < CE:标签>? 吸光度和荧光反应随着吸收剂量的增加。 水等效材料以所需的形式固化光聚合序列ESS。

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