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System modeling and evaluation of a prototype inverted-compound eye gamma camera for the second generation MR compatible SPECT

机译:用于第二代MR兼容SPECT的原型倒立复合眼伽马相机的系统建模和评估

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摘要

We have reported the design ot the MRC-SPECT-II system based on the inverted-compound-eye (ICE) gamma camera to offer a > 1 % detection efficiency while maintaining a sub-500 μm imaging resolution (Lai and Meng, 2018). One of the key challenges of using the ICE camera for SPECT imaging is whether one could develop an accurate point response function (PRF), given its complex aperture design and low fractionation accuracy of 3D printing. In this work, we will discuss (I) a combined experimental and analytical approach for deriving the precise PRF, and (II) an experimental imaging study to demonstrate the feasibility of using the ICE-camera for acquiring high-quality SPECT images with a sub-500 urn resolution. These studies would help to overcome one of the major hurdles for implement ICE-cameras for practical SPECT imaging.
机译:我们已经报告了基于倒置复眼(ICE)伽马相机的MRC-SPECT-II系统的设计,可提供> 1%的检测效率,同时保持低于500μm的成像分辨率(Lai和Meng,2018年) 。使用ICE相机进行SPECT成像的主要挑战之一是,鉴于其复杂的光圈设计和3D打印的低分割精度,能否开发出精确的点响应函数(PRF)。在这项工作中,我们将讨论(I)得出精确PRF的实验和分析相结合的方法,以及(II)实验成像研究,以证明使用ICE相机通过次子采集高质量SPECT图像的可行性分辨率为-500 n。这些研究将有助于克服实现用于实际SPECT成像的ICE相机的主要障碍之一。

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