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Feasibility of Single-Input Tracer Kinetic Modeling withContinuous-Time Formalism in Liver 4-Phase Dynamic Contrast-Enhanced CT

机译:单输入示踪剂动力学建模的可行性肝脏4相动态对比度增强CT中的连续时间形式主义

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摘要

The modeling of tracer kinetics with use of low-temporal-resolution data is of central importance for patient dose reduction in dynamic contrast-enhanced CT (DCE-CT) study. Tracer kinetic models of the liver vary according to the physiologic assumptions imposed on the model, and they can substantially differ in the ways how the input for blood supply and tissue compartments are modeled. In this study, single-input flow-limited (FL), Tofts-Kety (TK), extended TK (ETK), Hayton-Brady (HB), two compartment exchange (2CX), and adiabatic approximation to the tissue homogeneity (AATH) models were applied to the analysis of liver 4-phase DCE-CT data with fully continuous-time parameter formulation, including the bolus arrival time. The bolus arrival time for the 2CX and AATH models was described by modifying the vascular transport operator theory. Initial results indicate that single-input tracer kinetic modeling is feasible for distinguishing between hepatocellular carcinoma and normal liver parenchyma.
机译:使用低时间分辨率的数据对示踪剂动力学进行建模对于动态对比增强CT(DCE-CT)研究中的患者剂量减少至关重要。肝脏的示踪剂动力学模型根据施加在模型上的生理假设而变化,并且在建模血液供应和组织隔室的输入方式上可能存在很大差异。在这项研究中,单输入流量限制(FL),托夫茨-凯蒂(TK),扩展传统知识(ETK),海顿-布雷迪(HB),两室交换(2CX)和组织均质的绝热近似(AATH )模型用于分析具有完整连续时间参数公式(包括推注到达时间)的肝脏4相DCE-CT数据。通过修改血管转运算子理论描述了2CX和AATH模型的大剂量到达时间。初步结果表明,单输入示踪剂动力学模型可用于区分肝细胞癌和正常肝实质。

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