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Effect of noise, order and range in fitting the photopeak region of local, Anger-camera energy spectra

机译:噪声,秩序和范围在局部,愤怒相机能谱的Photopak区域的影响

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摘要

In order to estimate and correct Compton scattering in nuclear-medicine Anger-camera imaging, we have previously required the least-mean-square error between the locally measured energy spectrum and one dependent on a model. The model assumes a fixed-order polynomial for the spectrum of scatter and fits the data over a specified energy range. In this study, a Monte Carlo simulation program produces spectra at specified locations in a projection image of a 99mTc "hot" sphere in a "cold" cylinder. Poisson noise is subsequently added to each spectral channel, modelling a given count level within the acceptance window. Tests were done at two pixel locations, one at the center of the sphere and the other near the edge. Without noise, we find that the calculated-to-true ratio for unscattered counts is reasonably close to 1.0 (average 1.03, range 0.85 to 1.16) for all of the 16 order-range combinations that were tested. Tests on experimental data yield comparable results. For comparison, without any Compton-scatter correction the average ratio is 1.39. Optimizing the fitting parameters is difficult because, for example, the best set for location 1 is the worst for location 2. With noisy data, the relative standard deviation, and sometimes the bias for the estimate of direct (i.e. unscattered) counts, increases as the statistical noise increases. The average relative error for the estimate is 10% for the 3 cases measured with about 5000 unscattered counts but increases to 20% if that number decreases to 700.
机译:为了在核医学安格照相机成像以估计和正确康普顿散射,我们先前所需要的本地测量能量谱和一个依赖于模型之间的最小均方误差。该模型假设为散射的频谱的固定阶多项式和在指定的能量范围适合的数据。在这项研究中,蒙特卡罗模拟程序在“冷”缸中的99mTc“热”球的投影图像的指定位置产生光谱。泊松噪声随后加入到每个光谱信道,造型接受窗内的给定计数的水平。试验是在两个像素位置,一个在球体的中心和其他附近的边缘完成。无噪音,我们发现,所计算出的到真比为未散射计数是合理地接近1.0(平均1.03,范围为0.85至1.16)对于所有被测试的16阶范围组合。对实验数据进行测试得到可比较的结果。为了进行比较,没有任何康普顿散射校正的平均比率为1.39。优化拟合参数是困难的,因为,例如,对于位置1的最佳集合是最差的为位置2.噪声数据,相对标准偏差,有时偏压的直接的(即未散射)计数,随着估计统计噪声增大。用于估计的平均相对误差为约5000未散射的计数增加,但测量到20%如果该数目减少到700 3例的10%。

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