Department of Cardiovascular Medicine, Hokkaido University Graduate School of Medicine, Kita-15, Nishi-7, Kita-ku, Sapporo, 060-8638, Japan.
Department of Nuclear Medicine, Hokkaido University Graduate School of Medicine, Sapporo, Japan.
J Nucl Cardiol. 2018 Dec;25(6):1980-1987. doi: 10.1007/s12350-017-1072-z. Epub 2017 Sep 27.
Radionuclide imaging has an advantage for quantitative analyses of the tracer concentration and its temporal changes. Myocardial perfusion and function have been adapted for synchrony analyses. Extracted parameters have been demonstrated to measure ventricular synchrony and even to predict CRT outcomes. ERNA has the advantages of higher temporal resolution, greater reproducibility, and the volumetric analysis of both ventricles that can be applied for analyses of intraventricular synchrony and interventricular synchrony. Several software packages such as Quantitative Gated SPECT, the Emory Cardiac Toolbox, cardioREPO, and Heart Function View are available to assess the LV dyssynchrony parameters from GSPECT. A count-based method is applied to extract the amplitude and phase from each of the reconstructed GSPECT short-axis datasets throughout the cardiac cycle and then subjected to a Fourier analysis, the results of which are displayed on a polar map and histogram. Some of the parameters such as the bandwidth (expressed as the 95% width of the phase histogram) and the standard deviation of the phase are obtained by the phase histogram to assess the intraventricular synchrony. This review paper focuses on the application of the LV dyssynchrony parameters estimated by cardiac SPECT in patients with a heart disease.
放射性核素显像是定量分析示踪剂浓度及其时间变化的优势。心肌灌注和功能已适用于同步分析。提取的参数已被证明可测量心室同步性,甚至可预测 CRT 结果。ERNASPECT 具有更高的时间分辨率、更好的可重复性以及对两个心室的容积分析,可用于分析室内同步性和室间同步性。有几个软件包可用于从 GSPECT 评估 LV 不同步参数,例如定量门控 SPECT、埃默里心脏工具箱、cardioREPO 和心脏功能视图。计数法用于从整个心动周期的每个重建的 GSPECT 短轴数据集提取幅度和相位,然后进行傅立叶分析,结果显示在极坐标图和直方图上。通过相位直方图获得一些参数,例如带宽(表示为相位直方图的 95%宽度)和相位的标准差,以评估室内同步性。本文综述了心脏 SPECT 估计的 LV 不同步参数在心脏病患者中的应用。