Annu Int Conf IEEE Eng Med Biol Soc. 2022 Jul;2022:243-246. doi: 10.1109/EMBC48229.2022.9871200.
Quantification of brain [F] fluorodeoxyglucose ([F]FDG) positron emission tomography (PET) data requires an input function. A noninvasive alternative to gold-standard arterial sampling is the image-derived input function (IDIF), typically extracted from the internal carotid arteries (ICAs), which are however difficult to segment and subjected to spillover effects. In this work, we evaluated the feasibility of extracting the IDIF from two different vascular sites, i.e., 1) common carotids (CCA) and 2) superior sagittal sinus (SSS), other than 3) ICA in a large group of glioma patients undergoing a dynamic [F]FDG PET acquisition on a hybrid PET/MR scanner. Comparisons are drawn between the different IDIFs in terms of peak amplitude and shape, as well as between the estimates of fractional uptake rate (Kr) obtained from the different extraction sites in terms of a) grey/white matter average absolute values, b) ratio of grey-to-white matter, and c) spatial patterns for the hemisphere contralateral to the lesion. Clinical Relevance - This work points towards new feasible IDIF extraction sites (CCA in particular) which could allow for fully noninvasive absolute PET quantification in clinical populations.
脑 [F]氟脱氧葡萄糖 ([F]FDG) 正电子发射断层扫描 (PET) 数据的定量需要输入功能。一种替代金标准动脉采样的非侵入性方法是图像衍生输入功能 (IDIF),通常从颈内动脉 (ICA) 中提取,但 ICA 分割困难且存在溢出效应。在这项工作中,我们评估了从两个不同血管部位提取 IDIF 的可行性,即 1) 颈总动脉 (CCA) 和 2) 上矢状窦 (SSS),而不是 3) 在接受动态 [F]FDG PET 采集的大型胶质瘤患者中在混合 PET/MR 扫描仪上。比较了不同 IDIF 在峰值幅度和形状方面的差异,以及从不同提取部位获得的分数摄取率 (Kr) 估计值在 a) 灰质/白质平均绝对值、b) 灰质与白质的比值和 c) 病变对侧半球的空间模式方面的差异。临床意义 - 这项工作指出了新的可行的 IDIF 提取部位(特别是 CCA),这可能允许在临床人群中进行完全非侵入性的绝对 PET 定量。