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Bismuth Tri-iodide Polycrystalline Films As Beta Direct And Digital Imaging Detectors For Medical Applications

机译:铋三碘化物多晶薄膜作为Beta直接和数字成像检测器,用于医疗应用

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We report here the use of bismuth tri-iodide polycrystalline films as beta direct and digital detectors for medical imaging applications. First, films were grown by the physical vapor deposition method on glass substrates 2"× 2" in size, with gold previously deposited as rear contact. For the growth, bismuth tri-iodide 99.99% was heated at 280°C and 400 mmHg of Ar initial pressure, during 20 - 60 hours (for different film thickness). Film thickness gave values between 20 and 50 μm (± 5%). Film grain size was 10 μm (± 10%). Detectors were made by depositing gold onto the films as front contact (areas 7 -100 mm{sup}2) and then performing acrylic encapsulation. Resistivities up to 3 ×10{sup}15 Ω.cm were obtained for these detectors. The film response to beta radiation was checked by irradiating the films with beta emitters of different energies and doses and for several bias voltages applied to the detectors. Response correlates with the expected one, considering film thickness and the stopping power of the material, and results to be linear with the exposure rate. The ability of distinguish beta radiation in the presence of a gamma background was also checked. A phantom with a linear beta source arrangement was used to check the films feasibility of imaging separate tumors.
机译:我们在此报告使用铋三碘化物多晶膜作为β直接和数字探测器,用于医学成像应用。首先,通过物理气相沉积方法在玻璃基板上的尺寸为2“×2”的物理气相沉积方法,用预先作为后接触沉积的金。对于生长,铋三碘化物99.99%在280℃和400mmHg的AR初始压力下加热,在20-60小时(用于不同的膜厚度)。膜厚度在20至50μm之间的值(±5%)。薄膜粒度为10μm(±10%)。通过将金作为前触点(7 -100mm {sup} 2)沉积在薄膜上,然后进行丙烯酸包封来制造探测器。对于这些探测器,获得了高达3×10 {SUP}15Ω.cm的电阻。通过用不同能量和剂量的β发射器照射薄膜并施加到探测器的几个偏置电压来检查对β辐射的胶片响应。响应与预期的一个,考虑膜厚度和材料的停止功率,并导致具有曝光率的线性。还检查了在γ背景存在下区分β辐射的能力。使用线性β源装置的幻影用于检查成像分离肿瘤的膜的可行性。

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