Daou Doumit, Sabbah Rémy, Coaguila Carlos, Boulahdour Hatem
EA 7334 REMES, Université Paris-Diderot, Sorbonne Paris-Cité, Paris, France.
Nuclear Medicine Department, Cochin University Hospital, AP-HP, 27 rue du Faubourg Saint-Jacques, 75679, Paris Cedex 14, France.
J Nucl Cardiol. 2017 Oct;24(5):1598-1607. doi: 10.1007/s12350-016-0493-4. Epub 2016 May 11.
We developed a data-driven respiratory motion (RM) correction method (REGAT program) for multiple-pinhole detector CZT SPECT. We verified its clinical feasibility with myocardial perfusion imaging (MPI) and studied its impact on image characteristics.
This retrospective study included 18 patients having stress/rest Tc-Tetrofosmin MPI SPECT. List mode was acquired on CZT SPECT and processed with REGAT. REGAT generates reconstructed RM-gated volumes that are summed either without realignment (NR-SPECT) or after realignment (R-SPECT). For both stress and rest, we calculated the maximal RM in the 3 axis, and image characteristics of both R-SPECT and NR-SPECT: minimum left ventricular (LV) cavity counts (LV-Min), maximum LV myocardial counts (LV-Max), LV contrast, and FWHM of both anterior (FWHM-ant) and inferior (FWHM-inf) LV myocardial walls.
At both stress and rest, cranio-caudal motion was the dominant axial movement and REGAT had a positive impact on image characteristics as reflected by variations between R-SPECT and NR-SPECT in LV-Min, LV-Max, FWHM-ant, FWHM-inf, and contrast. These latter were well correlated to the amplitude of cranio-caudal motion at both stress and rest.
Data-driven RM correction of MPI acquired with CZT SPECT is clinically feasible and easily applicable. It presents interesting impact on image characteristics.
我们为多针孔探测器CZT SPECT开发了一种数据驱动的呼吸运动(RM)校正方法(REGAT程序)。我们通过心肌灌注成像(MPI)验证了其临床可行性,并研究了其对图像特征的影响。
这项回顾性研究纳入了18例进行负荷/静息锝-替曲膦MPI SPECT检查的患者。在CZT SPECT上采集列表模式数据并用REGAT进行处理。REGAT生成重建的RM门控容积,这些容积可在未重新对齐(NR-SPECT)或重新对齐后(R-SPECT)进行求和。对于负荷和静息状态,我们计算了三个轴向上的最大RM,以及R-SPECT和NR-SPECT的图像特征:左心室(LV)腔最小计数(LV-Min)、LV心肌最大计数(LV-Max)、LV对比度以及LV前壁(FWHM-ant)和下壁(FWHM-inf)的半高宽。
在负荷和静息状态下,头足向运动都是主要的轴向运动,并且如R-SPECT和NR-SPECT在LV-Min、LV-Max、FWHM-ant、FWHM-inf和对比度方面的差异所反映的,REGAT对图像特征有积极影响。后者与负荷和静息状态下头足向运动的幅度密切相关。
CZT SPECT采集的MPI的数据驱动RM校正在临床上是可行且易于应用的。它对图像特征有显著影响。