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Monte-Carlo simulations for an endoscopic time-of-flight PET detector

机译:内窥镜飞行时间PET探测器的蒙特卡洛模拟

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The EndoTOFPET-US collaboration develops a novel multimodal device for Ultrasound (US) Endoscopy and Positron Emission Tomography (PET) for detecting and quantifying novel morphologic and functional biomarkers for pancreas and prostate oncology. The detector is based on scintillating crystals with Silicon Photomultiplier (SiPM) read-out, aiming at a time of flight coincidence time resolution of 200 ps and a spatial resolution of ≈ 1 mm to allow for more sensitive, more precise and lower radiation-dose imaging than whole-body devices. We develop a framework, which is built around the Geant4-based simulation toolkit GAMOS, to simulate and reconstruct realistic imaging scenarios with this asymmetric PET detector. Both attenuation and activity DICOM data from e.g. PET/CT scans can be incorporated as phantoms in the simulations. The framework takes care of distributing jobs on a computing grid which is crucial for running large-scale simulations on voxelised phantoms. A set of studies on simple simulated phantoms quantifies the influence of acquisition time and detector movement on the spatial image resolution and overall image quality. A scan time of approx. 10 min and small rotation of around 10° yields a sufficient image quality. We further present qualitative studies of the expected performance of the EndoTOFPET-US detector using voxelised patient PET/CT DICOM datasets. The studies suggest that the endoscopic approach is able to separate the prostatic lesion well from the background radiation from prostate and bladder.
机译:EndoTOFPET-US合作开发了一种新型的多模态设备,用于超声(US)内窥镜和正电子发射断层扫描(PET),用于检测和定量胰腺和前列腺肿瘤的新型形态学和功能性生物标志物。该探测器基于具有硅光电倍增管(SiPM)读数的闪烁晶体,其飞行时间重合时间分辨率为200 ps,空间分辨率为≈1 mm,以实现更灵敏,更精确和更低的辐射剂量比全身设备成像。我们开发了一个框架,该框架围绕基于Geant4的仿真工具包GAMOS构建,以使用此非对称PET检测器来仿真和重建现实的成像方案。衰减和活性DICOM数据均来自例如PET / CT扫描可以作为幻像纳入模拟中。该框架负责在计算网格上分配作业,这对于在体素模型上运行大规模仿真至关重要。一组关于简单模拟体模的研究量化了采集时间和探测器移动对空间图像分辨率和整体图像质量的影响。大约扫描时间10分钟和大约10°的小旋转可产生足够的图像质量。我们进一步提出了使用体素化的患者PET / CT DICOM数据集对EndoTOFPET-US检测器的预期性能的定性研究。研究表明,内窥镜检查方法能够很好地将前列腺病变与前列腺和膀胱的背景辐射区分开。

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