The valuable role of dynamic <sup>18</sup>F FDG PET/CT-derived kinetic parameter K<sub>i</sub> in patients with nasopharyngeal carcinoma prior to radiotherapy: A prospective study.

Huang, Xiaotao; Zhuang, Mingzan; Yang, Shuai; Wang, Ying; Liu, Qiaodan; Xu, Xiwei; Xiao, Mei; Peng, Yingpeng et al. · Radiother Oncol · 2023

prospective_cohort · Level II

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Abstract

Dynamic positron emission tomography/computed tomography (PET/CT) served the potential role of characterizing malignant foci. The main objective of this prospective study was to explore the advantage of dynamic PET/CT imaging in characterizing nasopharyngeal carcinoma (NPC). Patients with probable head and neck disease underwent a local dynamic PET/CT scan followed by a whole-body static scan. Patlak analysis was used to generate parametric influx rate constant (K<sub>i</sub>) images from 48 frames obtained from a dynamic PET/CT scan. By delineating the volumes-of-interest (VOIs) of: primary tumor (PT), lymph node (LN), and normal nasopharyngeal tissues (N), we acquired the corresponding K<sub>i</sub> mean and SUVmean of each site respectively to perform the quantitative statistical analysis. Qualified images of 71 patients with newly diagnosed NPC and 8 without nasopharyngeal malignant lesions were finally included. We found the correlations between K<sub>i</sub> mean-PT and critical clinical features, including clinical stage (r = 0.368), T category (r = 0.643) and EBV-DNA copy status (r = 0.351), and K<sub>i</sub> mean-PT differed within the group. SUVmean-PT showed correlations with clinical stage (r = 0.280) and T category (r = 0.472), but could hardly differ systematically within group of clinical features except T category. K<sub>i</sub> mean-LN offered the positive correlations with N category (r = 0.294), M category (r = 0.238) and EBV-DNA copy status (r = 0.446), and differed within the group. In addition, K<sub>i</sub> mean represented a sensitivity of 94.4 % and a specificity of 100 %, in distinguishing NPC from the non-NPC, when the cut-off was defined as 0.0106. When the cut-off of SUV being defined as 2.03, the sensitivity and specificity were both 100 %. Our research confirmed K<sub>i</sub> compared favorably to SUV in characterizing NPC and found that K<sub>i</sub> can serve as an effective imaging marker of NPC.

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