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Assessment of the tracer delay effect in whole-brain computed tomography perfusion: Results in patients without known neuroanatomic abnormalities

机译:全脑计算机断层扫描灌注中示踪剂延迟效应的评估:无已知神经解剖异常的患者的结果

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OBJECTIVE: Whole-brain computed tomography perfusion (CTP) data sets generated by tracer delay-insensitive singular value decomposition plus (SVD+) and standard singular value decomposition (sSVD) deconvolution algorithms were evaluated to quantify relatedness and discrepancies in CTP results. METHODS: Twenty females with symmetrical hemispheric CTP maps indicative of brain tissue without apparent abnormalities were studied. Tissue-specific CTP values were analyzed. RESULTS: Standard SVD values were higher than SVD+ for cerebral blood flow. Other CTP values had minimal differences across brain regions. All simple linear regression models were statistically significant (P < 0.05) except for cerebral blood flow in white matter (P = 0.06). Cerebral blood volume had a good model fit, and mean transit time, a poor fit. CONCLUSIONS: Corresponding fitted CTP values for sSVD and SVD+ based on regression equations for brain-tissue types are presented. Additional research is required to compare SVD+ and sSVD in disease states when significant hemodynamic brain alterations are present.
机译:目的:对示踪剂延迟不敏感奇异值分解加(SVD +)和标准奇异值分解(sSVD)反卷积算法生成的全脑计算机断层扫描(CTP)数据集进行评估,以量化CTP结果中的相关性和差异。方法:研究了20名具有对称半球CTP图的女性,这些CTP图表明脑组织无明显异常。分析组织特异性CTP值。结果:脑血流的标准SVD值高于SVD +。其他CTP值在整个大脑区域的差异最小。除了白质的脑血流(P = 0.06)以外,所有简单的线性回归模型均具有统计学意义(P <0.05)。脑血容量具有良好的模型拟合度,而平均传输时间则较差。结论:提出了基于脑组织类型回归方程的sSVD和SVD +拟合CTP值。当存在明显的血流动力学大脑改变时,还需要进行其他研究来比较疾病状态下的SVD +和sSVD。

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