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Effect of real-time weighted integration system for rapid calculation of functional images in clinical positron emission tomography

机译:实时加权积分系统对临床正电子发射断层扫描功能图像快速计算的影响

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A system has been developed to rapidly calculate images of parametric rate constants, without acquiring dynamic frame data for clinical positron emission tomography (PET). This method is based on the weighted-integration algorithms for the two- and three-compartment models, and hardware developments (real-time operation and a large cache memory system) in HEADTOME-IV, which enables the acquisition of multiple sinograms with independent weight integration functions. Following the administration of the radio-tracer, the scan is initiated to collect multiple time-weighted, integrated sinograms with three weight functions. These sinograms are reconstructed and the images, with the arterial blood data, are inserted into the operational equations to provide parametric rate constant images. The implementation of this method has been tested in H/sub 2//sup 15/O and /sup 18/F-fluorophenylalanine (/sup 18/FPHE) studies based on a two-compartment model, and in a /sup 18/FDG study based on the three-compartment model. A volunteer study, completed for each compound, yielded results consistent with those produced by existing non-linear fitting methods. Thus, this system is capable of rapid generation of quantitative physiological functional images, without dynamic data acquisition, and will be of great advantage for clinical use of PET.
机译:已经开发出一种系统来快速计算参数速率常数的图像,而无需获取用于临床正电子发射断层扫描(PET)的动态帧数据。该方法基于两室和三室模型的加权积分算法,以及HEADTOME-IV中的硬件开发(实时操作和大型高速缓存系统),该技术可以采集具有独立权重的多个正弦图集成功能。在管理无线电示踪剂之后,将启动扫描以收集具有三个权重函数的多个时间加权的积分正弦图。重建这些正弦图,并将具有动脉血数据的图像插入到运算方程式中,以提供参数速率常数图像。已在基于两格模型的H / sub 2 // sup 15 / O和/ sup 18 / F-氟苯丙氨酸(/ sup 18 / FPHE)研究中和/ sup 18 /中测试了该方法的实现基于三室模型的FDG研究。对每种化合物完成的一项自愿研究得出的结果与现有非线性拟合方法产生的结果一致。因此,该系统能够快速生成定量的生理功能图像,而无需获取动态数据,并且对于临床使用PET将具有很大的优势。

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