首页> 外文期刊>Nuclear Medicine Review >Combination of physical exercise and adenosine improves accuracy of automatic calculation of stress LVEF in gated SPECT using QGS software
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Combination of physical exercise and adenosine improves accuracy of automatic calculation of stress LVEF in gated SPECT using QGS software

机译:体育锻炼和腺苷的结合提高了使用QGS软件在门控SPECT中自动计算应力LVEF的准确性

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BACKGROUND : Combining exercise and adenosine during the stress phase of myocardial perfusion imaging (MPI) is known to reduce adverse effects and improve image quality. The aim of this study was to assess whether it can also improve the automatic calculation of left ventricular ejection fraction (LVEF) by QGS software package, during the stress phase of Gated SPECT. MATERIAL AND METHODS : One hundred patients who had stress Gated SPECT were retrospectively included in this study. Gated data of those who had adenosine only (50 patients = group A) was compared with those obtained in another group of 50 patients who had added bicycle exercise (Group B). All had identical image acquisition protocol using 99m Tc-tetrofosmine. Clinical adverse effects, changes in blood pressure (BP), heart rate (HR), and ECG were monitored. Visual assessment of subdiaphragmatic uptake and accuracy of automatic regions of interest (ROI's) drawn by the software were noted. Regions of interest that involved sub-diaphragmatic uptake and resulting in low LVEF were manually adjusted to include the left ventricle only, and the frequency of manual adjustment was noted. RESULTS : No significant difference was noted in age, sex, baseline BP and HR between groups A and B. Adverse effects occurred less often in group B compared to group A (12% vs. 24%, p = 0.118). Maximum HR and BP achieved during stress were significantly higher in group B compared to group A (p = 0.025, p = 0.001 respectively). The number of patients who had faulty ROI's and low LVEF, who needed manual adjustment of ROI's, were higher in group A compared to group B (16% vs. 6%, p = 0.025). The values of LVEF showed significant improvement following manual adjustment of ROI's, increasing from a mean of 19.63 ± 15.96 to 62.13 ± 7.55 (p = 0.0001) and from 17.33 ± 9.5 to 49.67 ± 7.7 (p = 0.0014) in groups A and B respectively. CONCLUSION : The addition of exercise to adenosine significantly improves the automatic calculation of LVEF by QGS software during Gated SPECT and reduces the need for manual adjustment.
机译:背景:在心肌灌注成像(MPI)的应激阶段将运动和腺苷结合起来可减少不良反应并提高图像质量。这项研究的目的是评估在门控SPECT的应激阶段是否还能通过QGS软件包改善左心室射血分数(LVEF)的自动计算。材料与方法:本研究回顾性分析了一百名患有压力门控SPECT的患者。将仅具有腺苷的患者(50名患者= A组)的门控数据与另一组50例增加了自行车运动的患者(B组)的门控数据进行了比较。所有样品均使用99m Tc-四氟膦进行相同的图像采集。监测临床不良反应,血压(BP),心率(HR)和ECG的变化。记录下dia肌摄取的视觉评估以及该软件绘制的自动关注区域(ROI)的准确性。手动调整涉及dia肌下吸收并导致低LVEF的感兴趣区域,使其仅包括左心室,并注意手动调整的频率。结果:A和B组在年龄,性别,基线BP和HR上没有显着差异。与A组相比,B组不良反应发生的频率更低(12%vs. 24%,p = 0.118)。与A组相比,B组在压力下获得的最大HR和BP明显更高(分别为p = 0.025,p = 0.001)。与B组相比,A组的ROI有缺陷且LVEF低且需要手动调整ROI的患者数量要多于B组(16%vs. 6%,p = 0.025)。手动调整ROI后,LVEF值显示出显着改善,A组和B组的平均值从19.63±15.96增至62.13±7.55(p = 0.0001),从17.33±9.5增至49.67±7.7(p = 0.0014) 。结论:在腺苷运动中增加运动量可显着改善QGS软件在门控SPECT期间对LVEF的自动计算,并减少了手动调整的需要。

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