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使用心电图门控正电子发射断层扫描对左心室壁和腔室参数进行绝对定量分析。

Absolute quantitation of left ventricular wall and cavity parameters using ECG-gated PET.

作者信息

Freiberg Jacob, Hove Jens D, Kofoed Klaus F, Fritz-Hansen Thomas, Holm Søren, Larsson Henrik B, Kelbaek Henning

机构信息

Medical Department B, The Heart Center, Rigshospitalet, University of Copenhagen, Denmark.

出版信息

J Nucl Cardiol. 2004 Jan-Feb;11(1):38-46. doi: 10.1016/j.nuclcard.2003.09.009.

Abstract

BACKGROUND

Electrocardiography (ECG)-gated scintigraphy demonstrates promising results for the simultaneous assessment of myocardial glucose metabolism and contractile function. In this study a method was evaluated for absolute quantitation of left ventricular wall and cavity parameters with the use of fluorine 18 fluorodeoxyglucose (FDG) ECG-gated positron emission tomography (PET).

METHODS AND RESULTS

A previously developed 2-dimensional mathematical model was implemented for computer-automated identification of endocardial and pericardial borders. The accuracy and precision were tested in a heart phantom and in healthy subjects. Twelve healthy men aged 64 +/- 8 years were studied by use of cine magnetic resonance imaging (MRI) and ECG-gated FDG-PET during euglycemic glucose-insulin clamp. At increasing image noise levels, the estimated cavity volume of the heart phantom was within 2 mL of the actual volume, and no significant difference was found between actual and estimated wall thicknesses. Endocardial wall motion as assessed by ECG-gated PET in the healthy subjects was systematically underestimated compared with MRI. This underestimation correlated linearly with endocardial excursion during PET end diastole as measured by MRI. Myocardial end-diastolic wall thickness was systematically overestimated by PET, whereas end-systolic thickness deviated less than 1 mm from MRI. Cavity volumes measured by PET correlated linearly with MRI, with a tendency toward an underestimation of end-diastolic cavity volumes by PET.

CONCLUSIONS

Absolute measures of cardiac structure and function may be obtained with a reasonable degree of accuracy by use of ECG-gated PET imaging. However, a high ECG-gating frequency appears to be required to obtain measurements comparable to what may be achieved by MRI.

摘要

背景

心电图(ECG)门控闪烁扫描术在同时评估心肌葡萄糖代谢和收缩功能方面显示出了有前景的结果。在本研究中,对一种使用氟18氟脱氧葡萄糖(FDG)ECG门控正电子发射断层扫描(PET)来绝对定量左心室壁和腔室参数的方法进行了评估。

方法与结果

采用先前开发的二维数学模型进行心内膜和心包边界的计算机自动识别。在心脏模型和健康受试者中测试了准确性和精密度。12名年龄为64±8岁的健康男性在正常血糖-胰岛素钳夹期间接受了电影磁共振成像(MRI)和ECG门控FDG-PET检查。在图像噪声水平增加时,心脏模型的估计腔室容积与实际容积相差在2 mL以内,实际壁厚与估计壁厚之间未发现显著差异。与MRI相比,健康受试者中通过ECG门控PET评估的心内膜壁运动被系统性低估。这种低估与MRI测量的PET舒张末期的心内膜偏移呈线性相关。PET系统性高估了心肌舒张末期壁厚,而收缩末期壁厚与MRI的偏差小于1 mm。PET测量的腔室容积与MRI呈线性相关,PET有低估舒张末期腔室容积的趋势。

结论

通过使用ECG门控PET成像可以以合理的准确度获得心脏结构和功能的绝对测量值。然而,似乎需要高ECG门控频率才能获得与MRI相当的测量结果。

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