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首页> 外文期刊>IEEE Transactions on Nuclear Science >Performance amelioration for small animal SPECT using optimized pinhole collimator and image correction technique
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Performance amelioration for small animal SPECT using optimized pinhole collimator and image correction technique

机译:使用优化的针孔准直器和图像校正技术改善小动物SPECT的性能

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摘要

The aim of this study was to improve the performance of pinhole single photon emission computed tomography (SPECT) fabricated with a position sensitive photomultiplier tube using an optimized pinhole collimator and image correction technique. The center-of-rotation was aligned to prevent mechanical shift using a leveling-laser system. Based on the previous results of pinhole aperture simulation and optimization study, a pinhole collimator for the small animal SPECT was fabricated in the range of optimal pinhole diameter and channel height. Previously reported image correction technique of position mapping, energy calibration and flood correction procedures developed for array type scintillator was revised and applied to plate type crystal. Phantom and small animal studies were performed to investigate the system performance. Image corrections, center-of-rotation alignment, and collimator optimization were necessary to obtain high resolution and high quality SPECT images. The SPECT system ameliorated by this study could be utilized in small animal and molecular imaging studies required to provide high spatial resolution with moderate sensitivity.
机译:这项研究的目的是通过使用优化的针孔准直仪和图像校正技术来改善使用位置敏感光电倍增管制造的针孔单光子发射计算机断层扫描(SPECT)的性能。使用水平激光系统对准旋转中心,以防止机械偏移。根据针孔孔径模拟和优化研究的先前结果,在最佳针孔直径和通道高度范围内制造了用于小动物SPECT的针孔准直仪。以前报道的为阵列型闪烁体开发的位置映射图像校正技术,能量校准和溢流校正程序已被修订并应用于平板型晶体。进行了幻影和小型动物研究,以研究系统性能。为了获得高分辨率和高质量的SPECT图像,必须进行图像校正,旋转中心对齐和准直仪优化。这项研究改善的SPECT系统可用于小型动物和分子成像研究,以提供具有中等灵敏度的高空间分辨率。

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