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Advancing Nuclear Breast Imaging with the use of High-Purity Germanium detectors

机译:使用高纯锗探测器推进核乳腺成像

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Nuclear Breast Imaging with specifically designed gamma cameras can improve breast cancer detection. One benefit of semiconductor-based imaging systems is their superior energy resolution (ER) compared to scintillator cameras, which results in better scatter rejection. In this work we conducted simulations to compare the imaging performance of High-Purity Germanium (HPGe) and Cadmium Zinc Telluride (CZT) systems with 1% and 3.8% ER at 140 keV, respectively. The objective was to investigate whether the better ER offered by HPGe would translate into improved imaging performance. Using the Monte Carlo N-Particle (MCNP5) simulation package, we modeled both 5 mm-thick CZT and 10 mm-thick HPGe detectors with the same parallel-hole collimator for the imaging of a breast/torso phantom with three spherical tumors. Simulated energy spectra were generated, and images were created for various energy windows around the 140 keV photopeak. Scatter and torso fractions were calculated along with tumor contrast. Simulations showed that utilizing a ±1.25% energy window with an HPGe system suppressed torso background and small-angle scattered photons better than a comparable CZT system using an −5%/+10% energy window. Higher contrast between tumor signal and background was observed with HPGe with increases in sensitivity for equivalent activity imaged. Thus, further improvements in ER may lead to better tumor detection capabilities with conventional parallel-hole collimation.
机译:使用专门设计的伽马相机进行核乳腺成像可以提高乳腺癌的检测率。基于半导体的成像系统的优点之一是与闪烁器相机相比,它们具有出色的能量分辨率(ER),从而可以更好地抑制散射。在这项工作中,我们进行了仿真以比较分别在140 keV下具有1%和3.8%ER的高纯锗(HPGe)和碲化镉锌(CZT)系统的成像性能。目的是研究HPGe提供的更好的ER是否会转化为改善的成像性能。使用蒙特卡罗N粒子(MCNP5)模拟软件包,我们使用相同的平行孔准直器对5毫米厚的CZT和10毫米厚的HPGe检测器进行了建模,以对带有三个球形肿瘤的乳房/躯干体模进行成像。生成了模拟的能谱,并为140 keV光电峰附近的各种能量窗创建了图像。计算散度和躯干分数以及肿瘤对比。仿真表明,与使用−5%/ + 10%能量窗口的同类CZT系统相比,在HPGe系统中使用±1.25%能量窗口可更好地抑制躯干背景和小角度散射光子。用HPGe观察到肿瘤信号和背景之间的更高对比度,并且对等效活性的敏感性增加。因此,在常规平行孔准直中,ER的进一步改善可能会导致更好的肿瘤检测能力。

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