Nuclear Medicine Department, K. U. Leuven, B-3000 Leuven, Belgium.
IEEE Trans Med Imaging. 2012 Dec;31(12):2224-33. doi: 10.1109/TMI.2012.2212719. Epub 2012 Aug 9.
In positron emission tomography (PET) and single photon emission tomography (SPECT), attenuation correction is necessary for quantitative reconstruction of the tracer distribution. Previously, several attempts have been made to estimate the attenuation coefficients from emission data only. These attempts had limited success, because the problem does not have a unique solution, and severe and persistent "cross-talk" between the estimated activity and attenuation distributions was observed. In this paper, we show that the availability of time-of-flight (TOF) information eliminates the cross-talk problem by destroying symmetries in the associated Fisher information matrix. We propose a maximum-a-posteriori reconstruction algorithm for jointly estimating the attenuation and activity distributions from TOF PET data. The performance of the algorithm is studied with 2-D simulations, and further illustrated with phantom experiments and with a patient scan. The estimated attenuation image is robust to noise, and does not suffer from the cross-talk that was observed in non-TOF PET. However, some constraining is still mandatory, because the TOF data determine the attenuation sinogram only up to a constant offset.
在正电子发射断层扫描(PET)和单光子发射断层扫描(SPECT)中,为了对示踪剂分布进行定量重建,需要进行衰减校正。此前,已经有一些尝试仅从发射数据来估计衰减系数。这些尝试的成功有限,因为该问题没有唯一的解决方案,并且在估计的活性和衰减分布之间观察到严重且持续的“串扰”。在本文中,我们表明,飞行时间(TOF)信息的可用性通过破坏相关 Fisher 信息矩阵中的对称性来消除串扰问题。我们提出了一种最大后验重建算法,用于从 TOF PET 数据联合估计衰减和活性分布。该算法的性能通过二维模拟进行了研究,并通过体模实验和患者扫描进一步说明了。估计的衰减图像对噪声具有鲁棒性,并且不会像在非 TOF PET 中那样受到串扰的影响。然而,仍然需要一些约束,因为 TOF 数据仅将衰减正弦图确定为一个常数偏移。