门控心肌灌注SPECT和门控心肌FDG PET评价左室机械非同步化患者的左室功能。

Frank P Graner, Maximilian Fischer, Harun Ilhan, Peter Bartenstein, Andrei Todica, Sebastian Lehner
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引用次数: 0

摘要

背景:左心室机械不同步(LVMD)和左心室功能是相互交织的。门控心肌灌注SPECT (MPS)和门控氟脱氧葡萄糖正电子发射计算机断层扫描(FDG PET)是反复评估心肌非同步化和心肌功能的一种优雅的方式。据作者所知,在撰写本文时,尚无通过门控MPS和门控FDG PET测量的LVMD与左心室功能相互作用的综合评价;以及没有评价两种方法之间的一致性。方法:根据门控MPS数据集的期相分析结果将患者分为参考队列(RC)和非同步队列(DC)。随后分析左心室功能。结果:我们证明门控MPS检测到的LVMD与门控MPS和门控FDG PET成像中舒张末期体积(EDV)和收缩末期体积(ESV)的显著升高以及左室射血分数(LVEF)的显著降低有关。在RC和DC中,SPECT和PET在左室容积和LVEF方面表现出良好的一致性和普遍的高线性相关性。在联合队列(RC和DC)中,LVMD的增加与左室容积增加和LVEF降低相关。非同步参数熵的相关性最强。结论:我们证明门控SPECT和门控PET是评估lvd患者左心室功能的有用工具,通过门控MPS检测。非同步化程度的增加与心肌功能的日益降低有关。对于重复测量或治疗监测,两种方法不应互换使用。
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Assessment of left ventricular function with gated myocardial perfusion SPECT and gated myocardial FDG PET in patients with left ventricular mechanical dyssynchrony.

Background: Left ventricular mechanical dyssynchrony (LVMD) and left ventricular function are intertwined. Gated myocardial perfusion SPECT (MPS) and gated fluorodeoxyglucose positron emission computed tomography (FDG PET) is an elegant way for repeated assessment of myocardial dyssynchrony and myocardial function. To the knowledge of the authors at the time this manuscript was prepared, there was no comprehensive evaluation of the interplay of LVMD and left ventricular function as measured by gated MPS and gated FDG PET; as well as no evaluation of the agreement between the two methods.

Methods: Patients were assigned to the reference cohort (RC) and the dyssynchrony cohort (DC) based on the phase analysis results of gated MPS datasets. Subsequently left ventricular function was analyzed.

Results: We demonstrated that LVMD as detected by gated MPS is associated with a significantly higher end-diastolic volume (EDV) and end-systolic volume (ESV) as well as a significantly reduced left ventricular ejection fraction (LVEF) both in gated MPS and gated FDG PET imaging. In the RC and the DC SPECT and PET showed good agreement and generally high linear correlations with regard to left ventricular volumes and LVEF. In the combined cohort (RC and DC) increasing amounts of LVMD were associated with increasing left ventricular volumes as well as a decreasing LVEF. The association was strongest for the dyssynchrony parameter Entropy.

Conclusions: We demonstrated that gated SPECT and gated PET are useful tools in the evaluation of left ventricular function in patients with LVMD as detected by gated MPS. Increasing amounts of dyssynchrony were associated with an increasingly reduced myocardial function. For repeated measurements or therapy monitoring, the methods should not be used interchangeably.

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