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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Evaluation of Simplified Kinetic Analyses for Measurement of Brain Acetylcholinesterase Activity Using N-(11C)Methylpiperidin-4-yl Propionate and Positron Emission Tomography.
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Evaluation of Simplified Kinetic Analyses for Measurement of Brain Acetylcholinesterase Activity Using N-(11C)Methylpiperidin-4-yl Propionate and Positron Emission Tomography.

机译:使用N-(11C)甲基哌啶-4-基丙酸酯和正电子发射断层扫描技术测量脑乙酰胆碱酯酶活性的简化动力学分析的评估。

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摘要

SUMMARY:: The applicability of two reference tissue-based analyses without arterial blood sampling for the measurement of brain regional acetylcholinesterase (AChE) activity using N-[C]methylpiperidin-4-yl propionate ([C]MP4P) was evaluated in 12 healthy subjects. One was a linear least squares analysis derived from Blomqvist's equation, and the other was the analysis of the ratio of target-tissue radioactivity relative to reference-tissue radioactivity proposed by Herholz and coworkers. The standard compartment analysis using arterial input function provided reliable quantification of k3 (an index of AChE activity) estimates in regions with low (neocortex and hippocampus), moderate (thalamus), and high (cerebellum) AChE activity with a coefficient of variation (COV) of 12% to 19%. However, the precise k3 value in the striatum, where AChE activity is the highest, was not obtained. The striatum was used as a reference because its time-radioactivity curve was proportional to the time integral of the arterial input function. Reliable k3 estimates were also obtained in regions with low-to-moderate AChE activity with a COV of less than 21% by striatal reference analyses, though not obtained in the cerebellum. Shape analysis, the previous method of direct k3 estimation from the shape of time-radioactivity data, gave k3 estimates in the cortex and thalamus with a somewhat larger COV. In comparison with the standard analysis, a moderate overestimation of k3 by 9% to 18% in the linear analysis and a moderate underestimation by 2% to 13% in the Herholz method were observed, which were appropriately explained by the results of computer simulation. In conclusion, simplified kinetic analyses are practical and useful for the routine analysis of clinical [C]MP4P studies and are nearly as effective as the standard analysis for detecting regions with abnormal AChE activity.
机译:摘要::在12位健康者中评估了两种基于组织的参考分析,而无动脉血样分析法使用N- [C]甲基哌啶-4-基丙酸酯([C] MP4P)测量脑区域乙酰胆碱酯酶(AChE)活性的适用性科目。一个是从Blomqvist方程得出的线性最小二乘分析,另一个是Herholz和同事提出的目标组织放射性相对于参考组织放射性比率的分析。使用动脉输入功能的标准区室分析提供了可靠的k3估计值(AChE活性的指标),该值在AChE活性较低(大脑皮层和海马),中度(丘脑)和高(小脑)活动且变异系数(COV)高的区域)的12%到19%。但是,没有获得AChE活性最高的纹状体中的精确k3值。纹状体被用作参考,因为其时间放射性曲线与动脉输入功能的时间积分成比例。通过纹状体参考分析,在AChE活性低至中度的区域中也获得了可靠的k3估计值,尽管在小脑中未获得该结果,但COV低于21%。形状分析是从时间放射性数据的形状直接进行k3估算的先前方法,它在皮质和丘脑中的k3估算值具有较大的COV。与标准分析相比,在线性分析中观察到k3的适度高估了9%至18%,在Herholz方法中观察到了k3的适度低估了2%至13%,这可以通过计算机模拟的结果适当地解释。总之,简化的动力学分析在临床[C] MP4P研究的常规分析中是实用且有用的,并且与检测具有异常AChE活性的区域的标准分析几乎一样有效。

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