Pönisch Falk, Richter Christian, Just Uwe, Enghardt Wolfgang
OncoRay-Radiation Research in Oncology, Medizinische Fakultät Carl Gustav Carus, TU Dresden, Fetscherstrasse 74, PF 86, 01307 Dresden, Germany.
Phys Med Biol. 2008 Jul 7;53(13):N259-68. doi: 10.1088/0031-9155/53/13/N03. Epub 2008 Jun 19.
The image quality in a conventional positron emission tomography (PET)/computed tomography (CT) scanner is degraded by respiratory motion because of erroneous attenuation correction when three-dimensional image acquisition is used. To overcome this problem, time-resolved data acquisition (4D) is required. For this, a Siemens Biograph 16 PET/CT scanner has been modified and its normal capability has been extended to a true 4D-PET/4D-CT imaging device including phase-correlated attenuation correction. To verify the correct functionality of this device, experiments on a respiratory motion phantom that allowed movement in two dimensions have been performed. The measurements showed good spatial correlation as well as good time synchronization between the PET and CT data. Furthermore, the motion pattern of the phantom and the shape of the activity distribution have been examined, and the volume of the reconstructed PET images has been analyzed. The results demonstrate the feasibility of such a procedure, and we therefore recommend that 4D-PET data should be reconstructed using 4D-CT data, which can be acquired on the same machine.
在传统的正电子发射断层扫描(PET)/计算机断层扫描(CT)扫描仪中,由于使用三维图像采集时衰减校正错误,呼吸运动会降低图像质量。为克服这一问题,需要进行时间分辨数据采集(4D)。为此,对一台西门子Biograph 16 PET/CT扫描仪进行了改装,将其常规功能扩展为一台真正的4D-PET/4D-CT成像设备,包括相位相关衰减校正。为验证该设备的正确功能,已在一个允许二维运动的呼吸运动模型上进行了实验。测量结果表明,PET和CT数据之间具有良好的空间相关性以及良好的时间同步性。此外,还研究了模型的运动模式和放射性分布形状,并分析了重建PET图像的体积。结果证明了该方法的可行性,因此我们建议应使用可在同一台机器上采集的4D-CT数据来重建4D-PET数据。