Harel François, Finnerty Vincent, Grégoire Jean, Thibault Bernard, Khairy Paul
Department of Nuclear Medicine, Montreal Heart Institute and Université de Montréal, Montreal, Quebec, Canada.
J Nucl Cardiol. 2008 Jan-Feb;15(1):80-5. doi: 10.1016/j.nuclcard.2007.07.015. Epub 2007 Oct 25.
There is growing interest in developing a practical technique to accurately assess ventricular synchrony. We describe a novel 3-dimensional (3D) gated blood pool single photon emission computed tomography (SPECT) approach, from which a contraction homogeneity index (CHI) is derived and compared with planar phase analyses.
Subjects underwent planar and SPECT blood pool acquisition. Planar images were processed for left ventricular ejection fraction computation and phase values. SPECT images were processed by our novel algorithm, with which CHI was computed. Overall, 235 patients (79% male; mean age, 62 +/- 11 years) completed the study. Left ventricular ejection fractions were similar by planar (33.5% +/- 13.5%) and 3D (34.7% +/- 12.7%) methods (r = 0.83, P < .0001). Mean phase angles for planar and tomographic methods were 126.3 degrees +/- 29.6 degrees and 124.4 degrees +/- 28.7 degrees , respectively (r = 0.53, P < .0001). Phase and amplitude signals were incorporated in the CHI, which was non-normally distributed with a median of 73.8% (interquartile range, 58.7%-84.9%). This index minimized the negative impact of dyskinetic wall segments with limited regional motion. The planar heterogeneity index (SDPhi) was 28.2 degrees (interquartile range, 17.5 degrees -46.8 degrees ) and correlated inversely with CHI (r = -0.61, P < .0001).
The novel 3D dispersion index CHI accounts for both phase delay of a dyssynchronous segment and its magnitude of contraction and is moderately correlated with planar phase analyses. Its potential in cardiac resynchronization therapy remains to be exploited.
开发一种准确评估心室同步性的实用技术的兴趣与日俱增。我们描述了一种新型的三维(3D)门控血池单光子发射计算机断层扫描(SPECT)方法,从中得出收缩均匀性指数(CHI)并与平面相位分析进行比较。
受试者接受平面和SPECT血池采集。对平面图像进行处理以计算左心室射血分数和相位值。通过我们的新算法处理SPECT图像,并计算CHI。总体而言,235例患者(79%为男性;平均年龄62±11岁)完成了研究。平面法(33.5%±13.5%)和三维法(34.7%±12.7%)测得的左心室射血分数相似(r = 0.83,P <.0001)。平面法和断层扫描法的平均相位角分别为126.3°±29.6°和124.4°±28.7°(r = 0.53,P <.0001)。相位和振幅信号被纳入CHI,CHI呈非正态分布,中位数为73.8%(四分位间距为58.7%-84.9%)。该指数将运动受限的运动障碍壁段的负面影响降至最低。平面异质性指数(SDPhi)为28.2°(四分位间距为17.5°-46.8°),与CHI呈负相关(r = -0.61,P <.0001)。
新型三维离散指数CHI既考虑了不同步节段的相位延迟及其收缩幅度,且与平面相位分析中度相关。其在心脏再同步治疗中的潜力仍有待开发。