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使用图像衍生输入函数的动态心脏PET研究的采样要求。

Sampling requirements for dynamic cardiac PET studies using image-derived input functions.

作者信息

Raylman R R, Caraher J M, Hutchins G D

机构信息

Department of Internal Medicine, University of Michigan Medical Center, Ann Arbor 48109-0522.

出版信息

J Nucl Med. 1993 Mar;34(3):440-7.

PMID:8441036
Abstract

The utilization of image-derived input functions is becoming common in quantitative PET studies of the heart. Consequently, imaging protocols must be designed to sample both blood and tissue concentrations adequately. Most clinical imaging protocols consist of a series of short initial scans to measure the rapid change in blood and tissue tracer concentration levels, followed by scans of gradually increasing length. The number of initial short scans must be matched to the shape of the input function. In this paper, noise-free simulation studies were performed to evaluate the effect of temporal sampling on estimates of the parameters of a two-compartment kinetic model. In addition, the consequences of varying tracer infusion length and timing were studied. The kinetic model parameters' bias decreased when infusion times were lengthened or sampling rates increased. Our results indicated that tracer infusions of 30 sec were best suited for these studies. Two currently employed clinical imaging protocols were then optimized for use with this infusion scheme. Ten initial scans with durations of 10 sec, or twenty of 5 sec length produced unbiased estimates of kinetic model parameters that describe myocardial physiology. Noisy simulations with the equivalent of one million events confirmed these results.

摘要

在心脏的定量PET研究中,利用图像衍生的输入函数正变得越来越普遍。因此,成像方案必须设计成能够充分采集血液和组织浓度样本。大多数临床成像方案包括一系列初始短扫描,以测量血液和组织示踪剂浓度水平的快速变化,随后是扫描长度逐渐增加的扫描。初始短扫描的次数必须与输入函数的形状相匹配。在本文中,进行了无噪声模拟研究,以评估时间采样对双室动力学模型参数估计的影响。此外,还研究了示踪剂注入长度和时间变化的后果。当注入时间延长或采样率增加时,动力学模型参数的偏差减小。我们的结果表明,持续30秒的示踪剂注入最适合这些研究。然后,对两种目前使用的临床成像方案进行了优化,以与这种注入方案配合使用。十次持续10秒的初始扫描,或二十次持续5秒的扫描,对描述心肌生理的动力学模型参数产生了无偏差估计。相当于100万个事件的有噪声模拟证实了这些结果。

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