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Dual-Input Kinetic Modeling in Dynamic PET: Clinical Evaluation of the Impact of Time-of-Flight Imaging

机译:动态PET中的双输入动力学建模:飞行时间成像影响的临床评估

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Dynamic 18F-FDG PET has the promise of noninvasively measuring liver inflammation by means of tracer kinetic modeling. A unique feature of dynamic liver PET is that dual-input kinetic modeling is required for considering the dual-blood supply to the liver. While time-of-flight (TOF) reconstruction is expected to improve kinetic quantification over non-TOF imaging, it is unclear how the improvement by TOF interacts with tracer kinetic modeling and if the benefit of TOF can be transferred into improving the correlation of PET biomarkers with histopathology. In this paper, we investigate the impact of TOF imaging on conventional single-input kinetic modeling and new dual-input kinetic modeling using patient data of liver imaging and histopathological data. The results have shown that TOF imaging has a minimal effect on single-input kinetic modeling but is more impactful on the dual-input kinetic modeling approach. Combined use of the dual-input model and TOF is crucial for improving the correlation of the PET biomaker with liver inflammation.
机译:动态的 18 F-FDG PET有望通过示踪剂动力学建模无创地测量肝脏炎症。动态肝脏PET的独特之处在于,需要双重输入动力学模型来考虑肝脏的双血供应。尽管飞行时间(TOF)重建有望比非TOF成像改善动力学定量,但尚不清楚TOF的改善如何与示踪动力学模型相互作用,以及TOF的益处是否可以转移到改善PET相关性上组织病理学的生物标志物。在本文中,我们使用肝脏成像的患者数据和组织病理学数据,研究了TOF成像对常规单输入动力学模型和新的双输入动力学模型的影响。结果表明,TOF成像对单输入动力学建模的影响最小,但对双输入动力学建模方法的影响更大。双重输入模型和TOF的组合使用对于改善PET生物制造商与肝脏炎症的相关性至关重要。

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