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Gated SPECT quantification for myocardial thickness, left ventricular volumes and ejection fraction: methodology and phantom validation

机译:门控SPECT定量检测心肌厚度,左心室容积和射血分数:方法学和体模验证

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We present a novel counts- and geometry-based method for gated single photon emission computerized tomography (SPECT) quantification to assess myocardial thickness, left ventricular (LV) volumes and ejection fraction (EF). A median search approach and integrated counts strategy were used to determine the endo- and epi-cardial boundaries of the LV. The method was validated using 6 cardiac phantoms with a wide range of wall thicknesses from 6 mm to 16 mm and LV volumes from 33 mL to 128 mL. Tc-99m radioactive isotope with a concentration of 2.5 /spl mu/Ci/mL was injected into the phantoms to simulate normal myocardial perfusion. Two solid plastic inserts were placed in the simulated myocardium of phantoms to mimic dense perfusion defect. Phantom was submerged into a cylindrical tank filled with water to simulate photon attenuation of the human body. A total of 72 image acquisitions were acquired. Images were reconstructed, filtered, reorientated, aligned and computer animated to generate an 11-bin image sequence of simulated gated SPECT. Phantom wall thickness, volumes, and ejection fraction were calculated from the simulated gated SPECT. Correlations between SPECT quantified and actual values of thickness, volume and ejection fraction simulated by the phantoms were excellent. The quantitative results were not significantly affected by the dense perfusion defects simulated. In conclusion, the method developed is feasible to detect the LV boundaries and allows for precise estimation of myocardial thickness, LV volumes and ejection fraction as simulated by phantoms. Further patient validation for the method is warranted for clinical application.
机译:我们为门控单光子发射计算机断层扫描(SPECT)量化提供一种基于计数和几何的新颖方法,以评估心肌厚度,左心室(LV)体积和射血分数(EF)。中位搜索方法和综合计数策略用于确定左心室的心内膜和心外膜边界。该方法已通过6种心脏体模进行了验证,这些体模的壁厚范围从6 mm至16 mm,LV体积从33 mL至128 mL。将浓度为2.5 / spl mu / Ci / mL的Tc-99m放射性同位素注入模型中,以模拟正常的心肌灌注。将两个固体塑料插入物放置在模拟的体模心肌中,以模拟密集的灌注缺陷。幻影被浸入装有水的圆柱罐中,以模拟人体的光子衰减。总共获取了72个图像。图像经过重建,过滤,重新定向,对齐和计算机动画处理,以生成模拟门控SPECT的11-bin图像序列。从模拟的门控SPECT计算出幻影壁的厚度,体积和喷射分数。 SPECT量化的数值与体模模拟的厚度,体积和喷射分数的实际值之间的相关性非常好。定量结果没有受到模拟的密集灌注缺陷的显着影响。总之,开发的方法对于检测左室边界是可行的,并允许精确估计心肌厚度,左室体积和射血分数,如体模所模拟。有必要对该方法进行进一步的患者验证,以用于临床。

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