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A High-Resolution Time-of-Flight Clinical PET Detection System Using a Gapless PMT-Quadrant-Sharing Method

机译:使用无间隙PMT-象限共享方法的高分辨率飞行时间临床PET检测系统

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We developed a high-resolution Photomultiplier-Quadrant-Sharing (PQS) PET system for human imaging. This system is made up of 24 detector panels. Each panel (bank) consists of detector blocks, and each block has LYSO crystals of . We used a novel detector-grinding scheme that is compatible with the PQS detector-pixel-decoding requirements to make a gapless cylindrical detector ring for maximizing detection efficiency while delivering an ultrahigh spatial-resolution for a whole-body PET camera with a ring diameter of 87 cm and axial field of view of 27.6 cm. This grinding scheme enables two adjacent gapless panels to share one row of the PMTs to extend the PQS configuration beyond one panel and thus maximize the economic benefit (in PMT usage) of the PQS design. The entire detector ring has 129,024 crystals, all of which are clearly decoded using only 576 PMTs (38-mm diameter). Thus, each PMT on average decodes 224 crystals to achieve a high crystal-pitch resolution of . The detector blocks were mass-produced with our slab-sandwich-slice technique using a set of optimized mirror-film patterns (between crystals) to maximize light output and achieve high spatial and timing resolution. This detection system with time-of-flight capability was placed in a human PET/CT gantry. The reconstructed image resolution of the system was about 2.87 mm using 2D-filtered back-projection. The time-of-flight resolution was 473 ps. The preliminary images of phantoms and clinical studies presented in this work demonstrate the capability of this new PET/CT system to produce high-quality i- ages.
机译:我们开发了用于人类成像的高分辨率光电倍增象限共享(PQS)PET系统。该系统由24个检测器面板组成。每个面板(库)由检测器块组成,每个块具有LYSO晶体。我们使用了一种新颖的检测器研磨方案,该方案与PQS检测器像素解码要求兼容,可制造出无间隙的圆柱形检测器环,以最大程度地提高检测效率,同时为环直径为5,000的全身PET相机提供超高的空间分辨率87厘米,轴向视场为27.6厘米。这种研磨方案使两个相邻的无间隙面板共享一排PMT,从而将PQS配置扩展到一个面板之外,从而使PQS设计的经济效益(在PMT使用方面)最大化。整个检测器环具有129,024个晶体,仅使用576个PMT(直径38毫米)就可以清晰地解码所有晶体。因此,每个PMT平均解码224个晶体,以获得的高晶距分辨率。检测器模块是使用我们的平板夹层式切片技术大量生产的,使用了一组优化的镜膜图案(晶体之间),以最大化光输出并实现高空间和定时分辨率。该具有飞行时间功能的检测系统被放置在人类PET / CT机架中。使用2D滤波反投影后,系统的重建图像分辨率约为2.87毫米。飞行时间分辨率为473ps。这项工作中提供的人体模型和临床研究的初步图像证明了这种新型PET / CT系统产生高质量图像的能力。

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