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使用N-[(11)C]甲基哌啶-4-基乙酸酯在无需采集动脉血的情况下进行正电子发射断层扫描测量脑乙酰胆碱酯酶活性:形状分析方法及其对阿尔茨海默病的诊断能力

Positron emission tomographic measurement of brain acetylcholinesterase activity using N-[(11)C]methylpiperidin-4-yl acetate without arterial blood sampling: methodology of shape analysis and its diagnostic power for Alzheimer's disease.

作者信息

Tanaka N, Fukushi K, Shinotoh H, Nagatsuka S, Namba H, Iyo M, Aotsuka A, Ota T, Tanada S, Irie T

机构信息

Advanced Technology for Medical Imaging, National Institute of Radiological Sciences, Chiba, Japan.

出版信息

J Cereb Blood Flow Metab. 2001 Mar;21(3):295-306. doi: 10.1097/00004647-200103000-00013.

Abstract

N-[11C]methylpiperidin-4-yl acetate ([11C]MP4A) is a radiotracer that has been used successfully for the quantitative measurement of acetylcholinesterase (AChE) activity in the human brain with positron emission tomography (PET) using a standard compartment model analysis and a metabolite-corrected arterial input function. In the current study, the authors evaluated the applicability of a simple kinetic analysis without blood sampling, namely shape analysis. First, the authors used computer simulations to analyze factors that affect the precision and bias of shape analysis, then optimized the shape analysis procedure for [11C]MP4A. Before shape analysis execution, the later part of dynamic PET data except for the initial 3 minutes were smoothed by fitting to a bi-exponential function followed by linear interpolation of 8 data points between each of adjacent scan frames. Simulations showed that shape analysis yielded estimates of regional metabolic rates of [11C]MP4A by AChE (k3) with acceptable precision and bias in brain regions with low k3 values such as neocortex. Estimates in regions with higher k3 values became progressively more inaccurate. The authors then applied the method to [11C]MP4A PET data in 10 healthy subjects and 20 patients with Alzheimer's disease (AD). There was a highly significant linear correlation in regional k3 estimates between shape and compartment analyses (300 neocortical regions, [shape k3] = 0.93 x [NLS k3], r = 0.89, P < 0.001). Significant reductions in k3 estimates of frontal, temporal, parietal, occipital, and sensorimotor cerebral cortices in patients with AD as compared with controls were observed when using shape analysis (P < 0.013, two-tailed t-test), although these reductions (17% to 20%) were somewhat less than those obtained by compartment analysis (22% to 27%). The sensitivity of shape analysis for detecting neocortical regions with abnormally low k3 in the 20 patients with AD (92 out of 200 regions, 46%) also was somewhat less than compartment analysis (136 out of 200 regions, 68%). However, taking its simplicity and noninvasiveness into account, the authors conclude that quantitative measurement of neocortical AChE activity with shape analysis and [11C]MP4A PET is practical and useful for clinical diagnosis of AD.

摘要

N-[11C]甲基哌啶-4-基乙酸酯([11C]MP4A)是一种放射性示踪剂,已成功用于通过正电子发射断层扫描(PET)使用标准房室模型分析和代谢物校正动脉输入函数对人脑中乙酰胆碱酯酶(AChE)活性进行定量测量。在当前研究中,作者评估了一种无需采血的简单动力学分析方法,即形状分析的适用性。首先,作者使用计算机模拟来分析影响形状分析精度和偏差的因素,然后针对[11C]MP4A优化形状分析程序。在执行形状分析之前,动态PET数据除最初3分钟外的后半部分通过拟合双指数函数进行平滑处理,然后在相邻扫描帧之间对8个数据点进行线性插值。模拟结果表明,在诸如新皮层等k3值较低的脑区,形状分析能够以可接受的精度和偏差得出[11C]MP4A经AChE作用后的区域代谢率(k3)估计值。在k3值较高的区域,估计值逐渐变得更加不准确。然后作者将该方法应用于10名健康受试者和20名阿尔茨海默病(AD)患者的[11C]MP4A PET数据。形状分析和房室分析在区域k3估计值之间存在高度显著的线性相关性(300个新皮层区域,[形状k3]=0.93×[非线性最小二乘法k3],r = 0.89,P<0.001)。使用形状分析时,观察到AD患者额叶、颞叶、顶叶、枕叶和感觉运动皮层的k3估计值与对照组相比显著降低(P<0.013,双侧t检验),尽管这些降低幅度(17%至20%)略小于房室分析获得的降低幅度(22%至27%)。在20名AD患者中,形状分析检测k3异常低的新皮层区域的敏感性(200个区域中的92个,46%)也略低于房室分析(200个区域中的136个,68%)。然而,考虑到其简单性和非侵入性,作者得出结论,使用形状分析和[11C]MP4A PET对新皮层AChE活性进行定量测量对于AD的临床诊断是实用且有用的。

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