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LYSO Scintillators Coupled to Phototransistors for Orthogonal Ray Imaging: Experimental Results at 4 and 6-MV Linacs

机译:Lyso闪烁体耦合到正交射线成像的光电晶体管:4和6-MV Linacs的实验结果

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Orthogonal-ray imaging is a new technique under investigation by our groups. It shows good potential for (1) dose verification in external beam radiotherapy, and (2) very-low-dose computed tomography (CT-like) imaging. Here, we report on scanned, collimated measurements performed with LYSO crystals coupled to a phototransistor (PT), the latter fully substituting the photomultiplier tube (PMT). The very small dimensions of the PT allowed its insertion inside the collimation hole. Consequently, the well-known, harsh background flux characteristic of linacs used for radiotherapy is strongly reduced. This could allow for eliminating the need for PMT-dedicated shielding during the measurements, which provides a large reduction of complexity to all measurements. For this purpose, an electronics assembly was developed for signal formatting and acquisition. The setup was tested in 4-MV and 6-MV linacs, irradiating a PMMA phantom with a 80 mm x 80 mm squared beam. Despite the correlation obtained between the experimental profiles and the simulated dose, the PT showed insufficient sensitivity to detect an air cavity inside the phantom. Due to this reason we conclude that the PT is not a good alternative to the PMT.
机译:正交射线成像是我们群体调查的新技术。它显示出良好的(1)外束放射治疗剂量验证的潜力,(2)非常低剂量计算断层扫描(CT样)成像。这里,我们报告扫描,使用耦合到光电晶体(Pt)的Lyso晶体进行的准直测量,后者完全代替光电倍增管(PMT)。 PT的非常小的尺寸允许其插入准直孔内。因此,强烈降低了用于放射疗法的LINAC的众所周知的苛刻背景通量特征。这可以允许在测量期间消除对PMT专用屏蔽的需要,这提供了对所有测量的大大降低的复杂性。为此目的,开发了电子组件以用于信号格式和采集。在4-MV和6-MV LINAC中测试设置,用80mm×80mm平方光束照射PMMA模型。尽管实验型材与模拟剂量之间获得的相关性,但PT显示出不充分的敏感性,以检测模体内的空腔。由于这个原因,我们得出结论,PT不是PMT的良好替代品。

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