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首页> 外文期刊>Neurological Research: An Interdisciplinary Quarterly Journal >A strategy for Compton scatter correction in brain SPECT by orthogonal image expansions assisted by neural networks.
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A strategy for Compton scatter correction in brain SPECT by orthogonal image expansions assisted by neural networks.

机译:通过神经网络辅助的正交图像扩展在大脑SPECT中进行康普顿散射校正的策略。

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The simultaneous dual energy acquisition is often required to accurate co-registration of brain images of both energy windows. However, the reconstructed images in the lower energy window are usually distorted by a significant Compton scatter component originating from the higher energy photons. We are proposing two methods for calculating the Compton scatter correction. Both of them utilize sets of TC99m and associated Compton scatter images in TI(201) energy window that represent a patient population and calculate the sought Compton image estimate 'by comparison' of the given new Tc99m image with the Tc99m set. The first method is based on the principal component image expansion and the second one utilizes in addition learning neural networks. Means to measure the accuracy of results are proposed as well. The proposed methods can be modified for application to other anatomical domains.
机译:通常需要同时进行双能量采集,以精确地同时注册两个能量窗口的大脑图像。但是,较低能量窗口中的重建图像通常会因源自较高能量光子的重要康普顿散射分量而失真。我们提出了两种计算康普顿散射校正的方法。他们俩都利用代表患者人群的TI(201)能量窗口中的TC99m集和相关的康普顿散射图像,并“通过比较”给定的新Tc99m图像与Tc99m集来计算所需的康普顿图像估计。第一种方法基于主成分图像展开,第二种方法则利用了额外的学习神经网络。还提出了测量结果准确性的方法。所提出的方法可以被修改以应用于其他解剖领域。

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