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氙气/CT脑血流量的可靠性与误差分析

Reliability and error analysis on xenon/CT CBF.

作者信息

Zhang Z

机构信息

Diversified Diagnostic Products, Inc., Houston, TX, USA.

出版信息

Keio J Med. 2000 Feb;49 Suppl 1:A29-32.

PMID:10750331
Abstract

This article provides a quantitative error analysis of a simulation model of xenon/CT CBF in order to investigate the behavior and effect of different types of errors such as CT noise, motion artifacts, lower percentage of xenon supply, lower tissue enhancements, etc. A mathematical model is built to simulate these errors. By adjusting the initial parameters of the simulation model, we can scale the Gaussian noise, control the percentage of xenon supply, and change the tissue enhancement with different kVp settings. The motion artifact will be treated separately by geometrically shifting the sequential CT images. The input function is chosen from an end-tidal xenon curve of a practical study. Four kinds of cerebral blood flow, 10, 20, 50, and 80 cc/100 g/min, are examined under different error environments and the corresponding CT images are generated following the currently popular timing protocol. The simulated studies will be fed to a regular xenon/CT CBF system for calculation and evaluation. A quantitative comparison is given to reveal the behavior and effect of individual error resources. Mixed error testing is also provided to inspect the combination effect of errors. The experiment shows that CT noise is still a major error resource. The motion artifact affects the CBF results more geometrically than quantitatively. Lower xenon supply has a lesser effect on the results, but will reduce the signal/noise ratio. The lower xenon enhancement will lower the flow values in all areas of brain.

摘要

本文对氙/CT脑血流量模拟模型进行了定量误差分析,以研究不同类型误差(如CT噪声、运动伪影、较低的氙供应百分比、较低的组织强化等)的表现和影响。构建了一个数学模型来模拟这些误差。通过调整模拟模型的初始参数,我们可以缩放高斯噪声、控制氙供应的百分比,并通过不同的千伏峰值设置改变组织强化。运动伪影将通过对序列CT图像进行几何移位来单独处理。输入函数选自一项实际研究的潮气末氙曲线。在不同的误差环境下,对四种脑血流量,即10、20、50和80毫升/100克/分钟进行了研究,并按照当前流行的时间协议生成了相应的CT图像。模拟研究将输入到常规的氙/CT脑血流量系统中进行计算和评估。进行了定量比较,以揭示各个误差源的表现和影响。还提供了混合误差测试,以检查误差的组合效应。实验表明,CT噪声仍然是主要的误差源。运动伪影对脑血流量结果的影响更多地体现在几何方面而非定量方面。较低的氙供应对结果的影响较小,但会降低信噪比。较低的氙强化会降低大脑所有区域的血流量值。

相似文献

1
Reliability and error analysis on xenon/CT CBF.氙气/CT脑血流量的可靠性与误差分析
Keio J Med. 2000 Feb;49 Suppl 1:A29-32.
2
Effect of hematocrit on calculation of cerebral blood flow and lambda in xenon CT.
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3
Effect of the end-tidal xenon correction method on cerebral blood flow determination.呼气末氙气校正方法对脑血流量测定的影响。
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5
Local cerebral blood flow by xenon-enhanced CT: current status, potential improvements, and future directions.氙增强CT测量局部脑血流量:现状、潜在改进及未来方向。
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The in vivo autoradiographic measurement of regional cerebral blood flow using stable xenon and computerized tomography: the effect of tissue heterogeneity and computerized tomography noise.使用稳定氙气和计算机断层扫描进行脑局部血流量的体内放射自显影测量:组织异质性和计算机断层扫描噪声的影响
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8
Effects of premedication with oral hydroxyzine on patient motion during inhalation of 32% xenon for regional cerebral blood flow mapping.口服羟嗪预处理对吸入32%氙气进行局部脑血流图谱检查时患者活动的影响。
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