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首页> 外文期刊>Molecular imaging and biology: MIB : the official publication of the Academy of Molecular Imaging >Quantitative Analysis of Heterogeneous [F-18]FDG Static (SUV) vs. Patlak (Ki) Whole-body PET Imaging Using Different Segmentation Methods: a Simulation Study
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Quantitative Analysis of Heterogeneous [F-18]FDG Static (SUV) vs. Patlak (Ki) Whole-body PET Imaging Using Different Segmentation Methods: a Simulation Study

机译:不同分割方法的异构[F-18] FDG静态(SUV)与Patlak(ki)全身宠物成像的定量分析:模拟研究

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摘要

PurposeWhole-body (WB) dynamic positron emission tomography (PET) enables imaging of highly quantitative physiological uptake parameters beyond the standardized uptake value (SUV). We present a novel dynamic WB anthropomorphic PET simulation framework to assess the potential of 2-deoxy-2-[F-18]fluoro-D-glucose ([F-18]FDG) net uptake rate constant (Ki) imaging in characterizing tumor heterogeneity.ProceduresValidated heterogeneous [F-18]FDG tumor kinetics were modeled within the XCAT phantom (ground truth). Thereafter, static (SUV) and dynamic PET data were simulated and reconstructed, followed by indirect WB Patlak Ki imaging. Subsequently, we compared the methods of affinity propagation (AP) and automatic segmentation with active contour (MASAC) to evaluate the impact of tumor delineation. Finally, we extracted the metabolically active tumor volume (MATV), Dice similarity coefficient (DSC), and the intratumoral heterogeneity metrics of the area under the cumulative intensity histogram curve (CIHAUC), homogeneity, entropy, dissimilarity, high-intensity emphasis (HIE), and zone percentage (ZP), along with the target-to-background (TBR) and contrast-to-noise ratios (CNR).ResultsKi images presented higher TBR but lower CNR compared to SUV. In contrast to MASAC, AP segmentation resulted in smaller bias for MATV and DSC scores in Ki compared to SUV images. All metrics, except for ZP, were significantly different in AP segmentation between SUV and Ki images, with significant correlation observed for MATV, homogeneity, dissimilarity, and entropy. With MASAC segmentation, CIHAUC, homogeneity, and dissimilarity were significantly different between SUV and Ki images, with all metrics, except for HIE and ZP, being significantly correlated. In ground truth images, increased heterogeneity was observed with Ki compared to SUV, with a high correlation for all metrics.ConclusionsA novel simulation framework was developed for the assessment of the quantitative benefits of WB Patlak PET on realistic heterogeneous tumor models. Quantitative analysis showed that WB Ki imaging may provide enhanced TBR and facilitate lesion segmentation and quantification beyond the SUV capabilities.
机译:目的的填充(WB)动态正电子发射断层扫描(PET)可以在标准化摄取值(SUV)之外的高度定量生理摄取参数的成像。我们提出了一种新型动态WB拟人宠物仿真框架,以评估表征肿瘤的2-脱氧-2- [F-18]氟-2- [F-18]氟-d-葡萄糖([F-18] FDG)净吸收率常数(Ki)成像的潜力异质性。在XCAT幻像(地面真理)内建模化了非均相[F-18] FDG肿瘤动力学。此后,模拟并重建静态(SUV)和动态PET数据,然后是间接WB Patlak Ki成像。随后,我们将亲和力传播(AP)和自动分割的方法进行了与活性轮廓(MASAC)进行了比较,以评估肿瘤描绘的影响。最后,我们在累积强度直方图曲线(Cihauc),均匀性,熵,异质,高强度重点,高强度强调(HIE )和区域百分比(ZP)以及目标 - 背景(TBR)和对比度噪声比(CNR).Resultski图像呈现出更高的TBR,但与SUV相比,CNR降低。与MASAC相比,与SUV图像相比,AP分段导致ki中的MATV和DSC分数较小。除ZP之外的所有度量在SUV和Ki图像之间的AP分段中显着差异,对于MatV,均匀性,异化和熵,观察到具有显着的相关性。通过Masac分割,SUV和Ki图像之间的Cihauc,均匀性和异化性显着差异,除HIE和ZP之外的所有度量都显着相关。在实际图像中,与SUV相比,ki观察到增加的异质性,对所有度量的高相关性。对于评估WB Patrak PET对现实异质肿瘤模型的定量益处,开发了高度相关性。定量分析表明,WB KI成像可以提供增强的TBR,并促进病变分段和超出SUV能力的定量。

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