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首页> 外文期刊>The Journal of Nuclear Medicine >Differential effect of 180 degrees and 360 degrees acquisition orbits on the accuracy of SPECT imaging: quantitative evaluation in phantoms.
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Differential effect of 180 degrees and 360 degrees acquisition orbits on the accuracy of SPECT imaging: quantitative evaluation in phantoms.

机译:180度和360度采集轨道对SPECT成像精度的影响:幻像的定量评估。

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摘要

A circular 180 degrees acquisition orbit is considered standard for cardiac SPECT imaging. Theoretically, a 360 degrees acquisition orbit is preferred because of more complete Fourier spectral information on projection data. The differential effect of 180 degrees and 360 degrees acquisition orbits on image accuracy (homogeneity and defect size) was assessed quantitatively in phantom studies. METHODS: SPECT imaging with a dual-head gamma camera was performed on normal cardiac phantoms filled with a (99m)Tc solution, using 180 degrees and 360 degrees circular acquisition orbits. The phantoms were placed in the center of the orbit and at 5, 10, and 15 cm off center. Fillable defect inserts of different sizes were placed in the phantom to simulate myocardial perfusion defects. The homogeneity of count distribution in short-axis slices of the normal phantom was analyzed as the percentage of variability. Defects were quantified as a percentage of the entire phantom volume using circumferential count profiles and normal reference profiles. RESULTS: When normal phantoms were placed in the center of the orbit, percentage variability was not different whether a 180 degrees or 360 degrees acquisition orbit was used (4.2% +/- 0.1% vs. 4.4% +/- 0.2%, P = not statistically significant). However when normal phantoms were placed off center, SPECT imaging with a 180 degrees acquisition orbit showed increasing inhomogeneity, both visually and quantitatively (e.g., percentage variability for the 15-cm off-center position was 10.8% +/- 0.1% (P < 0.0001). SPECT imaging with a 360 degrees acquisition orbit showed similar homogeneity visually and quantitatively, whether the phantom was placed in or off the center (e.g., percentage variability for the 15-cm off-center position was 4.6% +/- 0.5%, P = not statistically significant). Quantification of phantom defects acquired with a 180 degrees orbit showed increasing overestimation of defect sizes with increasingly off-center positions. Quantification of phantom defects acquired with a 360 degrees orbit showed no effect from progressively off-center positions, although phantom defect sizes were mildly underestimated. CONCLUSION: SPECT images acquired with a 180 degrees orbit may have significant erroneous inhomogeneity and overestimation of defect size, in particular when the target object is off the center of the orbit, as is commonly seen in clinical cardiac imaging. In contrast, SPECT images acquired with a 360 degrees orbit may provide more accurate quantitative information.
机译:圆形180度采集轨道被认为是心脏SPECT成像的标准配置。从理论上讲,最好使用360度捕获轨道,因为投影数据上的傅里叶光谱信息更为完整。在体模研究中定量评估了180度和360度采集轨道对图像精度(均匀性和缺陷尺寸)的不同影响。方法:在装有(99m)Tc溶液的正常心脏幻像上,使用180度和360度圆形捕获轨道对双头伽马相机进行SPECT成像。幻影被放置在轨道的中心,离中心5、10和15厘米。将不同尺寸的可填充缺损插入物放置在体模中,以模拟心肌灌注缺损。分析正常体模的短轴切片中计数分布的均匀性,作为变异性百分比。使用圆周计数轮廓和正常参考轮廓将缺陷量化为整个幻像体积的百分比。结果:将正常体模放置在轨道中心时,无论使用180度还是360度采集轨道,百分比变异性都没有差异(4.2%+/- 0.1%vs. 4.4%+/- 0.2%,P =没有统计学意义)。但是,当正常体模偏离中心放置时,具有180度采集轨道的SPECT成像在视觉和数量上都显示出越来越高的不均匀性(例如,偏离中心15厘米的位置的百分比变异性为10.8%+/- 0.1%(P < 0.0001)。具有360度采集轨道的SPECT成像在视觉和数量上均显示出相似的同质性,无论幻像是放置在中心还是不在中心(例如,偏离中心15厘米的位置的百分比变异性为4.6%+/- 0.5% ,P =统计学上不显着)。对180度轨道上获得的幻像缺陷进行量化显示,随着偏心位置的增加,对缺陷尺寸的高估程度也越来越高;对360度轨道上获得的幻象缺陷进行量化,表明对渐进偏心位置没有影响。结论:幻像缺陷的大小被低估了结论:在180度轨道上获取的SPECT图像可能存在明显的错误不均匀性和覆盖缺陷尺寸的刺激,特别是当目标物体偏离眼眶中心时,这在临床心脏成像中很常见。相反,以360度轨道获取的SPECT图像可以提供更准确的定量信息。

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