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Washout allometric reference method (WARM) for parametric analysis of 11CPIB in human brains

机译:冲洗法全称参考方法(WARM)用于人脑中11C PIB的参数分析

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摘要

Rapid clearance and disappearance of a tracer from the circulation challenges the determination of the tracer's binding potentials in brain (BPND) by positron emission tomography (PET). This is the case for the analysis of the binding of radiolabeled [11C]Pittsburgh Compound B ([11C]PIB) to amyloid-β (Aβ) plaques in brain of patients with Alzheimer's disease (AD). To resolve the issue of rapid clearance from the circulation, we here introduce the flow-independent Washout Allometric Reference Method (WARM) for the analysis of washout and binding of [11C]PIB in two groups of human subjects, healthy aged control subjects (HC), and patients suffering from AD, and we compare the results to the outcome of two conventional analysis methods. We also use the rapid initial clearance to obtain a surrogate measure of the rate of cerebral blood flow (CBF), as well as a method of identifying a suitable reference region directly from the [11C]PIB signal. The difference of average absolute CBF values between the AD and HC groups was highly significant (P < 0.003). The CBF measures were not significantly different between the groups when normalized to cerebellar gray matter flow. Thus, when flow differences confound conventional measures of [11C]PIB binding, the separate estimates of CBF and BPND provide additional information about possible AD. The results demonstrate the importance of data-driven estimation of CBF and BPND, as well as reference region detection from the [11C]PIB signal. We conclude that the WARM method yields stable measures of BPND with relative ease, using only integration for noise reduction and no model regression. The method accounts for relative flow differences in the brain tissue and yields a calibrated measure of absolute CBF directly from the [11C]PIB signal. Compared to conventional methods, WARM optimizes the Aβ plaque load discrimination between patients with AD and healthy controls (P = 0.009).
机译:从循环中快速清除和消失示踪剂对通过正电子发射断层扫描(PET)确定示踪剂在脑中的结合势(BPND)提出了挑战。这是分析放射性标记的[ 11 C]匹兹堡化合物B([ 11 C] PIB)与脑中淀粉样β(Aβ)斑块结合的情况患有阿尔茨海默氏病(AD)的患者。为了解决从循环中快速清除的问题,我们在这里介绍了与流量无关的洗脱溶出度测定参考方法(WARM),用于分析两组人[ 11 C] PIB的洗脱和结合情况受试者,健康的老年对照受试者(HC)和患有AD的患者,我们将结果与两种常规分析方法的结果进行了比较。我们还使用快速初始清除率来获得对脑血流量(CBF)的替代测量,以及直接从[ 11 C] PIB信号中识别合适参考区域的方法。 AD组和HC组之间的平均绝对CBF值差异非常显着(P <0.003)。当标准化为小脑灰质流量时,两组之间的CBF度量值无显着差异。因此,当流量差异混淆了[ 11 C] PIB结合的常规方法时,CBF和BPND的单独估计值会提供有关可能的AD的其他信息。结果证明了数据驱动的CBF和BPND估计以及从[ 11 C] PIB信号进行参考区域检测的重要性。我们得出的结论是,WARM方法使用相对简单的积分即可稳定地测量BPND,仅使用积分进行降噪,而无需模型回归。该方法考虑了脑组织中的相对流量差异,并直接从[ 11 C] PIB信号中获得了绝对CBF的校准量度。与常规方法相比,WARM优化了AD患者和健康对照之间的Aβ斑块负荷判别(P = 0.009)。

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