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Fast calibration of SPECT monolithic scintillation detectors using un-collimated sources

机译:使用非准直源快速校准SPECT单片闪烁探测器

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摘要

Monolithic scintillation detectors for positron emission tomography and single-photon emission computed tomography (SPECT) imaging have many advantages over pixelated detectors. The use of monolithic crystals allows for reducing the scintillator cost per unit volume and increasing the sensitivity along with the energy and timing resolution of the detector. In addition, on thick detectors the depth-of-interaction can be determined without additional hardware. However, costly and complex calibration procedures have been proposed to achieve optimal detector performance for monolithic detectors. This hampers their use in commercial systems. There is thus, a need for simple calibration routines that can be performed on assembled systems. The main goal of this work is to develop a simplified calibration procedure based on acquired training data. In comparison with other methods that use training data acquired with beam sources attached to robotic stages, the proposed method uses a static un-collimated activity source with simple geometry acquiring in a reasonable time. Once the data are acquired, the calibration of the detector is accomplished in three steps: energy calibration based on the k-means clustering method, self-organization based on the self-organizing maps algorithm, and distortion correction based on the Monge-Kantorovich grid adaptation. The proposed calibration method was validated for 2D positioning using a SPECT detector. Similar results were obtained by comparison with an existing calibration method (maximum likelihood estimation). In conclusion, we proposed a novel calibration method for monolithic scintillation detectors that greatly simplifies their use with optimal performance in SPECT systems.
机译:正电子发射断层扫描和单光子发射计算机断层扫描(SPECT)成像的单片闪烁探测器比像素化探测器具有许多优势。整体晶体的使用允许降低每单位体积的闪烁器成本,并增加灵敏度以及检测器的能量和定时分辨率。此外,在厚检测器上,无需其他硬件即可确定相互作用的深度。然而,已经提出了昂贵且复杂的校准程序来实现单片检测器的最佳检测器性能。这阻碍了它们在商业系统中的使用。因此,需要可以在组装系统上执行的简单校准程序。这项工作的主要目标是根据获取的训练数据开发简化的校准程序。与使用其他方法将训练数据附加到机器人平台上的射线源相比较,所提出的方法使用静态的无准直活动源,并在合理的时间内获得简单的几何形状。一旦获取数据,就可以通过三个步骤完成检测器的校准:基于k均值聚类方法的能量校准,基于自组织映射算法的自组织以及基于Monge-Kantorovich网格的畸变校正适应。使用SPECT检测器对提出的校准方法进行了二维定位验证。通过与现有校准方法(最大似然估计)进行比较,获得了相似的结果。总之,我们提出了一种用于单片闪烁探测器的新型校准方法,该方法极大地简化了其在SPECT系统中的使用,并具有最佳性能。

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