首页> 外文期刊>European journal of nuclear medicine >Superiority of triple-detector single-photon emission tomography over single- and dual-detector systems in the minimization of motion artefacts.
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Superiority of triple-detector single-photon emission tomography over single- and dual-detector systems in the minimization of motion artefacts.

机译:在使运动伪影最小化方面,三探测器单光子发射层析成像技术优于单探测器和双探测器系统。

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A patient motion-related artefact is one of the most important artefacts in single-photon emission tomography (SPET) imaging. This study evaluated the effect of the number and configuration of SPET detectors on motion artefacts. The following acquisition conditions were simulated based on original 360 degrees projection images: (1) single-detector 180 degrees rotation (S180), (2) a dual-detector rectangular (L-shaped) 180 degrees acquisition (D180L), (3) dual-detector cameras mounted opposite each other with 360 degrees acquisition (D360) and (4) triple-detector 360 degrees acquisition (T360). The motion artefacts were introduced using a syringe and a myocardial phantom. Clinical cases with technetium-99m methoxyisobutylisonitrile and thallium-201 studies were analysed to confirm the validity of this phantom simulation. The effect of continuous alternate rotation acquisition and summing the projections on the reduction of motion artefacts was investigated in each model. The effect of motion depended on the number and the configuration of the SPET detectors. A 1-pixel (6.4 mm) motion in the S180, D180L and D360 models generated only slight artefacts, and a 2-pixel motion led to an apparent decrease in activity or created hot areas in the myocardium. On the other hand, a T360 rotation created few artefacts even with a 2-pixel motion of the last quarter of the projections. Despite the difference in attenuation with 201Tl and 99mTc, similar artefact patterns were observed with both radionuclides in selected patient model studies. Continuous alternate rotation could reduce artefacts caused by less than a 2-pixel motion. In conclusion, calculating the average of the sum of the projections of triple-detector 360 degrees rotations with alternate rotation is the best method to minimize motion artefacts. This "averaging" effect of motion artefacts is a key to this simulation.
机译:与患者运动有关的伪影是单光子发射断层扫描(SPET)成像中最重要的伪影之一。这项研究评估了SPET检测器的数量和配置对运动伪像的影响。基于原始360度投影图像模拟了以下采集条件:(1)单探测器180度旋转(S180),(2)双探测器矩形(L形)180度采集(D180L),(3)双检测器相机彼此相对安装,并具有360度采集(D360)和(4)三检测器360度采集(T360)。使用注射器和心肌模型引入运动伪像。分析了99 99m甲氧基异丁基异腈和th 201的临床病例,以确认该幻象模拟的有效性。在每个模型中研究了连续交替旋转获取和求和投影对减少运动伪影的影响。运动的效果取决于SPET检测器的数量和配置。在S180,D180L和D360模型中,只有1个像素(6.4毫米)的运动会产生轻微的伪影,而有2个像素的运动会导致活动性明显下降或在心肌中形成热点区域。另一方面,即使对最后四分之一的投影进行2像素的运动,T360旋转也几乎不会产生伪影。尽管201T1和99mTc的衰减有所不同,但在选定的患者模型研究中,两种放射性核素均观察到了相似的伪像模式。连续交替旋转可以减少由少于2个像素的运动引起的伪影。总之,计算360度旋转三重检测器交替投影的投影总和的平均值是最小化运动伪影的最佳方法。运动伪影的这种“平均”效果是此模拟的关键。

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