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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Automatic image processing pipeline for tracking longitudinal vessel changes in magnetic resonance angiography
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Automatic image processing pipeline for tracking longitudinal vessel changes in magnetic resonance angiography

机译:用于跟踪磁共振血管造影纵向血管变化的自动图像处理管道

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Background Cerebral vessel diameter changes objectively and automatically derived from longitudinal magnetic resonance angiography (MRA) facilitate quantification of vessel changes and further modeling. Purpose To characterize longitudinal changes in intracranial vessel diameter using time‐of‐flight (TOF) MRA. Study Type Retrospective longitudinal study. Subject Population IN all, 112 pediatric patients, aged 9.96?±?4.59?years, with craniopharyngioma from 2006–2011 scanned annually. Field Strength/Sequence 1.5T and 3T TOF MRA. Statistical Tests Chi‐square and Wilcoxon–Mann–Whitney tests. Assessment Manual measurements using interventional angiography was established as a reference standard for diameter measurements. Constant and linear quantile regression with absolute difference, percentage difference, and relative difference was used for outlier detection. Results Major vessels surrounding the circle of Willis were successfully segmented except for posterior communicating arteries, mostly due to disease‐related hypoplasia. Diameter measurements were calculated at 1‐mm segments with a median computed vessel diameter of 1.25?mm. Diameter distortion due to registration was within 0.04?mm for 99% of vessel segments. Outlier detection using quantile regression detected less than 4.34% as being outliers. Outliers were more frequent in smaller vessels and proximity to bifurcations ( P 0.001). Data Conclusion Using the proposed method, objective changes in vessel diameter can be acquired noninvasively from routine longitudinal imaging. High‐throughput analyses of imaging‐derived vascular trees combined with clinical and treatment parameters will allow rigorous modeling of vessel diameter changes. Level of Evidence : 2 Technical Efficacy : Stage 2 J. Magn. Reson. Imaging 2019;50:1063–1074.
机译:背景技术脑血管直径客观地变化,并且源自纵向磁共振血管造影(MRA)促进血管变化和进一步建模的定量。目的是使用飞行时间(TOF)MRA的颅内血管直径纵向变化的目的。研究类型回顾性纵向研究。所有,112名儿科患者的受试者人口,年龄9.96岁?±4.59岁,每年扫描2006 - 2011年的颅咽管瘤。场强/序列1.5T和3T TOF MRA。统计测试Chi-Square和Wilcoxon-Mann-Whitney测试。使用介入血管造影进行评估手动测量作为直径测量的参考标准。具有绝对差异,百分比差异和相对差异的恒定和线性定量回归用于异常值检测。结果围绕威利斯圈圈的主要血管除了沟通动脉外,主要是由于疾病相关的发育不全。直径测量以1毫米的段计算,中值计算的容器直径为1.25Ωmm。由于配准引起的直径失真在99%的血管段中0.04Ωmm。异常值检测使用量数回归检测到小于4.34%作为异常值。异常值更频繁地在较小的血管和分叉接近(P <0.001)。数据结论使用所提出的方法,可以从常规纵向成像中非侵入地获取血管直径的客观变化。与临床和治疗参数相结合的成像血管树的高通量分析将允许血管直径的严格建模变化。证据水平:2技术疗效:第2阶段J. MANG。恢复。 2019年成像; 50:1063-1074。

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