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首页> 外文期刊>Journal of nuclear medicine technology >Continuous Repetitive Data Acquisition with ~123I-FP-CIT SPECT: Effects of Rotation Speed and Rotation Time
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Continuous Repetitive Data Acquisition with ~123I-FP-CIT SPECT: Effects of Rotation Speed and Rotation Time

机译:连续重复数据采集与〜123i-FP-CIT SPECT:旋转速度和旋转时间的影响

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The aim of this study was to evaluate the effects of the acquisition rotation speed and the rotation time for continuous repetitive rotation acquisition (CRRA) on image quality and quantification in ~123I-FP-CIT SPECT. Methods: An anthropomorphic striatal phantom filled with ~123I solution was acquired with CRRA and the step-and-shoot (SS) mode. The following combinations of acquisition rotation speed and rotation time for CRRA were used: 0.50 rpm by 30 frames, 0.17 rpm by 10 frames, 0.10 rpm by 6 frames, and 0.05 rpm by 3 frames. SPECT images were reconstructed using ordered-subset expectation maximization with resolution recovery, scatter, and CT-based attenuation correction. Two kinds of image processing patterns—image reconstruction after the addition of projection data (the added-projection-data process) and image addition after data reconstruction (the added-recon-structed-image process)—were investigated in this study. The effects of the acquisition parameters and the image processes were evaluated by the full width at half maximum, percentage coefficient of variation (%CV), and specific binding ratio (SBR). Results: With full width at half maximum, there were no clear differences between CRRA images obtained with the various rotation speeds before rotation and the SS mode. Although the combination of a slow rotation speed and a short rotation time improved image uniformity compared with the SS mode, the %CV obtained by CRRA increased as the rotation speed increased. The %CVs were 11.9% ± 0.9% for 0.50 rpm by 30 frames, 6.9% ± 0.9% for 0.05 rpm by 3 frames, and 9.6% ± 0.5% for SS mode. SBRs obtained by CRRA with the added-projection-data process were equal to those obtained by SS mode. However, SBRs obtained with the added-reconstructed-image process were clearly decreased compared with the SS mode. Conclusion: The combination of rotation speed and rotation times affects the image quality and quantification of ~123I-FP-CIT SPECT using CRRA. When CRRA is applied in ~123I-FP-CIT SPECT, it is necessary to use added-projection-data processes and proper rotation speeds (e.g., 0.10-0.17 rpm rotation speed).
机译:本研究的目的是评估采集旋转速度和连续重复旋转采集(CRRA)的旋转时间对〜123i-FP-CIT SPECT的图像质量和量化的旋转时间的影响。方法:用CRRA和阶梯和芽(SS)模式获得填充〜123I溶液的拟蒽型纹状体体。使用以下采集旋转速度和旋转时间的采集旋转速度和旋转时间的组合:0.50 rpm,30帧,0.17rpm,10帧,0.10rpm,乘6帧,0.05rpm,3帧。使用具有分辨率恢复,分散和基于CT的衰减校正来重建SPECT图像。两种图像处理模式 - 图像重建在添加投影数据(添加投影数据处理)和数据重建之后的图像添加(附加的-Crec-Struction-Image Process) - 在本研究中进行了两种。采集参数和图像过程的影响通过半最大,变异百分比系数(%CV)和特异性结合比(SBR)的全宽来评估。结果:最大宽度的全宽,在旋转前的各种旋转速度和SS模式下获得的CRRA图像之间没有明显的差异。尽管与SS模式相比,慢速转速和短旋转时间的短旋转时间改善了图像均匀性,但是通过CRRA获得的%CV随着转速增加而增加。 0.50rpm的%CV为30帧,0.05 rpm的0.50rpm为3帧,3帧为3.9%±0.9%,SS模式为9.6%±0.5%。通过CRRA与添加投影数据过程获得的SBR等于通过SS模式获得的SBR。然而,与添加重建图像过程获得的SBR与SS模式相比明显减少。结论:旋转速度和旋转时间的组合影响了CRRA〜123i-FP-CIT SPECT的图像质量和量化。当CRRA应用于〜123i-FP-CIT SPECT时,有必要使用添加投影数据处理和适当的旋转速度(例如,0.10-0.17 RPM旋转速度)。

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