Wendt Richard E, Ai Hua A, Meier Joseph G, Lopez Benjamin P, Fahrenholtz Samuel J, Mawlawi Osama R
Department of Imaging Physics, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Imaging Physics Residency Program, The University of Texas MD Anderson Cancer Center, Houston, Texas.
J Appl Clin Med Phys. 2018 Nov;19(6):336-340. doi: 10.1002/acm2.12479. Epub 2018 Oct 19.
The attenuation of 511 keV photons by the structure of a PET/MR scanner was measured prior to energizing the magnet. The exposure rate from a source of fluorine-18 was measured in air and, with the source placed at the isocenter of the instrument, at various points outside of the scanner. In an arc from 45 to 135 degrees relative to the long axis of the scanner and at a distance of 1.5 m from the isocenter, the attenuation by the scanner is at least 5.6 half-value layers from the MR component alone and at least 6.6 half-value layers with the PET insert installed. This information could inform better design of the radiation shielding for PET/MR scanners.
在启动磁体之前,测量了PET/MR扫描仪结构对511 keV光子的衰减。在空气中测量了氟-18源的曝光率,并将源置于仪器等中心,在扫描仪外部的不同点进行测量。在相对于扫描仪长轴45度至135度的弧线上,且距离等中心1.5米处,仅MR组件造成的扫描仪衰减至少为5.6个半价层,安装PET插件后衰减至少为6.6个半价层。这些信息可为PET/MR扫描仪的辐射屏蔽优化设计提供参考。