首页> 外文会议>International Conference on Image Processings >SIMULTANEOUS ACTIVITY ATTENUATION RECONSTRUCTION IN POSITRON EMISSION TOMOGRAPHY VIA MAXIMUM LIKELIHOOD AND ITERATIVE METHODS
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SIMULTANEOUS ACTIVITY ATTENUATION RECONSTRUCTION IN POSITRON EMISSION TOMOGRAPHY VIA MAXIMUM LIKELIHOOD AND ITERATIVE METHODS

机译:通过最大似然和迭代方法同时发生正电子发射断层扫描的活动衰减重建

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Emission computed tomography reconstruction requires compensation for photon attenuation. The usual way to do this is by a previous transmission scan to reconstruct the attenuation map. An important improvement could be achieved if it is possible to retrieve the attenuation map directly from the activity data. Several approaches have been suggested before to do this by using iterative methods for solving Maximum Likelihood (ML) problems (or Penalized Maximum Likelihood, MAP) that take into account the Poisson nature of the noise. One of the main drawbacks has been that these methods tend to retrieve solutions that generate an undesired crosstalk between the attenuation and the activity maps. In this paper we present a new approach to the problem in Positron Emission Tomography that uses a minorization function algorithm applied to the Poisson likelihood function; this algorithm, together with an appropriate decreasing multiplicative factor and iterative data refinement tend to eliminate the crosstalk between the images.
机译:发射计算机断层扫描重建需要补偿光子衰减。通常的方法是通过先前的传输扫描来重建衰减图。如果可以直接从活动数据检索衰减映射,则可以实现重要的改进。之前提出了几种方法来通过使用迭代方法来解决最大可能性(ML)问题(或惩罚最大可能性,地图),以考虑噪声的泊松性质。其中一个主要缺点是这些方法倾向于检索在衰减和活动图之间产生不期望的串扰的溶液。在本文中,我们向正电子发射断层扫描的问题提出了一种新方法,这些方法采用了应用于泊松似然函数的荧光化函数算法;该算法与适当的降低乘法因子和迭代数据细化倾向于消除图像之间的串扰。

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