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Simulation of the expected performance of INSERT: A new multi-modality SPECT/MRI system for preclinical and clinical imaging

机译:INSERT预期性能的仿真:用于临床前和临床成像的新型多模式SPECT / MRI系统

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摘要

A new multi-modality imaging tool is under development in the framework of the INSERT (INtegrated SPECT/MRI for Enhanced Stratification in Radio-chemo Therapy) project, supported by the European Community. The final goal is to develop a custom SPECT apparatus, that can be used as an insert for commercially available MRI systems such as 3 T MRI with 59 cm bore diameter. INSERT is expected to offer more effective and earlier diagnosis with potentially better outcome in survival for the treatment of brain tumors, primarily glioma. Two SPECT prototypes will be developed, one dedicated to preclinical imaging, the second one dedicated to clinical imaging.The basic building block of the SPECT detector ring is a small 5 cm×5 cm gamma camera, based on the well-established Anger architecture with a continuous scintillator readout by an array of silicon photodetectors. Silicon Drift Detectors (SDDs) and Silicon PhotoMultipliers (SiPM) are being considered as possible scintillator readout, considering that the detector choice plays a predominant role for the final performance of the system, such as energy and spatial resolution, as well as the useful field of view of the camera. Both solutions are therefore under study to evaluate their performances in terms of field of view (FOV), spatial and energy resolution. Preliminary simulations for both the preclinical and clinical systems have been carried out to evaluate resolution and sensitivity.
机译:在欧洲共同体支持的INSERT(用于放射化学疗法中增强分层的集成SPECT / MRI)项目框架内,正在开发一种新的多模态成像工具。最终目标是开发一种定制的SPECT仪器,该仪器可用作市售MRI系统(例如孔径为59 cm的3 T MRI)的插入物。 INSERT有望提供更有效和更早的诊断,并可能在治疗脑肿瘤(主要是神经胶质瘤)的生存中获得更好的结果。将开发两个SPECT原型,一个专门用于临床前成像,第二个专门用于临床成像。SPECT检测器环的基本构件是一个小型5厘米x 5厘米伽玛相机,其基于成熟的Anger架构和由硅光电探测器组成的连续闪烁体读数。硅漂移检测器(SDD)和硅光电倍增管(SiPM)被认为是可能的闪烁体读数,考虑到检测器的选择对于系统的最终性能(例如能量和空间分辨率以及有用的领域)起着主要作用。摄像机的视图。因此,正在研究这两种解决方案,以从视场(FOV),空间和能量分辨率方面评估其性能。已对临床前和临床系统进行了初步模拟,以评估分辨率和灵敏度。

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