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使用测量散射数据对单光子发射断层扫描进行衰减校正,无需进行透射扫描。

Use of measured scatter data for the attenuation correction of single photon emission tomography without transmission scanning.

机构信息

Institute of Nuclear Medicine, University College Hospital, London NW1 2BU, United Kingdom.

出版信息

Med Phys. 2013 Aug;40(8):082506. doi: 10.1118/1.4812686.

Abstract

PURPOSE

Attenuation correction is essential for reliable interpretation of emission tomography, however, the use of transmission measurements to generate attenuation maps is limited by availability of equipment and potential mismatches between the transmission and emission measurements. The authors present a first step toward a method of estimating an attenuation map from measured scatter data without a transmission scan.

METHODS

A scatter model has been developed that accurately predicts the distribution of photons which have been scattered once. The scatter model has been used as the basis of a maximum likelihood gradient ascent method to estimate an attenuation map from measured scatter data. In order to estimate both the attenuation map and activity distribution, iterations of the derived scatter based algorithm have been alternated with the maximum likelihood expectation maximization algorithm in a joint estimation process. For each iteration of the attenuation map estimation, the activity distribution is fixed at the values estimated during the previous activity iteration, and in each iteration of the activity distribution estimation the attenuation map is fixed at the values estimated during the previous attenuation iteration. The use of photopeak data to enhance the estimation of the attenuation map compared to the use of scatter data alone has also been considered. The algorithm derived has been used to reconstruct data simulated for an idealized two-dimensional situation and using a physical phantom.

RESULTS

The reconstruction of idealized data demonstrated good reconstruction of both the activity distribution and attenuation map. The inclusion of information recorded in the photopeak energy window in the attenuation map estimation step demonstrated an improvement in the accuracy of the reconstruction, enabling an accurate attenuation map to be recovered. Validation of the results with physical phantom data demonstrated that different regions of attenuation could be distinguished in a real situation and produces results that represent a promising first step toward the use of scatter data to estimate the activity distribution and attenuation map from single photon emission tomography (SPECT) data without a transmission scan.

CONCLUSIONS

The technique presented shows promise as a method of attenuation correction for SPECT data without the need for a separate transmission scan. Further work is required to further improve the method and to compensate for the assumptions used in the scatter model.

摘要

目的

衰减校正对于可靠解释发射断层扫描至关重要,然而,使用传输测量来生成衰减图受到设备可用性和传输与发射测量之间潜在不匹配的限制。作者提出了一种从测量散射数据而无需传输扫描来估计衰减图的方法的第一步。

方法

已经开发了一种散射模型,该模型可以准确地预测已经散射一次的光子的分布。该散射模型已被用作最大似然梯度上升方法的基础,从测量的散射数据中估计衰减图。为了同时估计衰减图和活动分布,已经在联合估计过程中交替进行基于散射的算法的迭代和最大似然期望最大化算法的迭代。对于衰减图估计的每次迭代,将活动分布固定在先前活动迭代中估计的值,并且在每次活动分布估计的迭代中,将衰减图固定在先前衰减迭代中估计的值。还考虑了使用光电峰数据来增强衰减图的估计,而不是单独使用散射数据。已经使用物理体模来重建理想二维情况的模拟数据,使用所推导的算法。

结果

理想数据的重建证明了活动分布和衰减图的良好重建。在衰减图估计步骤中包含在光电峰能量窗口中记录的信息,证明了重建的准确性得到了提高,从而可以恢复准确的衰减图。使用物理体模数据验证结果证明,在实际情况下可以区分不同的衰减区域,并产生代表使用散射数据从单光子发射断层扫描(SPECT)数据而无需传输扫描来估计活动分布和衰减图的有希望的第一步的结果。

结论

所提出的技术显示出作为无需单独传输扫描的 SPECT 数据衰减校正方法的前景。需要进一步的工作来进一步改进该方法并补偿散射模型中使用的假设。

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