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利用源自躯干横截面和噪声等效计数的回归函数优化正电子发射断层扫描研究的采集时间

Acquisition time optimization of positron emission tomography studies by use of a regression function derived from torso cross-sections and noise-equivalent counts.

作者信息

Kangai Yoshiharu, Onishi Hideo

机构信息

Program in Biological System Sciences, Graduate on School of Comprehensive Scientific Research, Prefectural University of Hiroshima, 1-1 Gakuenmachi, Mihara, Hiroshima, 723-0053, Japan.

Department of Radiology, Kawasaki Medical School Hospital, 577 Matsushima, Kurashiki, Okayama, 701-0192, Japan.

出版信息

Radiol Phys Technol. 2016 Jul;9(2):161-9. doi: 10.1007/s12194-016-0345-6. Epub 2016 Jan 21.

Abstract

In this study, we aimed to optimize the positron emission tomography (PET) acquisition time for individual patients by employing a regression function derived from torso cross-sections by using computed tomography (CT) attenuation corrections and the noise-equivalent counts (NECs). We initially determined the standard image quality or the standard NEC at our institution by visually assessing the images acquired from 61 patients. We measured the NECs of the livers and the torso cross-sections of 165 patients who were evaluated with PET/CT with (18)F-2-fluoro-2-deoxy-D-glucose on the basis of our standard protocol of 120 s/bed position. The optimal acquisition time (OPT) was calculated as the product of the ratio of the standard NEC to the estimated NEC multiplied by 120 s. The estimated NEC was derived from the oval cross-section of each patient by use of the regression function. We evaluated the validity of the OPT equation in 59 additional patients. We determined 5.83 Mcounts as the standard NEC at our institution. The mean OPTs in a group of 59 patients of whom 20, 19, and 20 were underweight, normal-weight, and overweight, respectively, were 106.3 ± 18.0, 137.1 ± 4.6, and 172.1 ± 24.3 s, respectively. After optimization, the NECs for normal-weight and overweight patients increased by 14 and 43 %, respectively, compared with the NECs attained with use of the conventional acquisition time (120 s). Using the regression function based on the torso cross-sections and the NECs enabled optimizations of the PET acquisition times for individual patients.

摘要

在本研究中,我们旨在通过使用由计算机断层扫描(CT)衰减校正和噪声等效计数(NEC)得出的来自躯干横截面的回归函数,为个体患者优化正电子发射断层扫描(PET)采集时间。我们首先通过视觉评估从61例患者获取的图像,确定了我们机构的标准图像质量或标准NEC。我们根据120秒/床位的标准方案,测量了165例接受PET/CT检查并使用(18)F-2-氟-2-脱氧-D-葡萄糖的患者肝脏和躯干横截面的NEC。最佳采集时间(OPT)计算为标准NEC与估计NEC的比值乘以120秒的乘积。估计的NEC通过使用回归函数从每个患者的椭圆形横截面得出。我们在另外59例患者中评估了OPT方程的有效性。我们确定5.83M计数为我们机构的标准NEC。在一组59例患者中,分别有20例、19例和20例体重过轻、体重正常和超重,其平均OPT分别为106.3±18.0、137.1±4.6和172.1±24.3秒。优化后,与使用传统采集时间(120秒)获得的NEC相比,体重正常和超重患者的NEC分别增加了14%和43%。使用基于躯干横截面和NEC的回归函数能够为个体患者优化PET采集时间。

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