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Fetal brain MRI texture analysis identifies different microstructural patterns in adequate and small for gestational age fetuses at term

机译:胎儿脑MRI纹理分析可确定足月胎儿足月的小微结构形态

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Objectives: We tested the hypothesis whether a texture analysis (TA) algorithm applied to MRI brain images identified different patterns in small for gestational age (SGA) fetuses as compared with adequate for gestational age (AGA). Study Design: MRI was performed on 83 SGA and 70 AGA at 37 weeks' GA. Texture features were quantified in the frontal lobe, basal ganglia, mesencephalon, cerebellum and cingulum. A classification algorithm based on discriminative models was used to correlate texture features with clinical diagnosis. Results: Region of interest delineation in all areas was achieved in 61 SGA (12 vasodilated) and 52 AGA; this was the sample for TA feature extraction which allowed classifying SGA from AGA with accuracies ranging from 90.9 to 98.9% in SGA versus AGA comparison and from 93.6 to 100% in vasodilated SGA versus AGA comparison. Conclusions: This study demonstrates that TA can detect brain differences in SGA fetuses. This supports the existence of brain microstructural changes in SGA fetuses.
机译:目的:我们检验了一种假设,即应用于MRI脑图像的纹理分析(TA)算法与适合胎龄(AGA)的胎儿相比,在小胎龄(SGA)胎儿中是否识别出不同的模式。研究设计:在第37周GA时对83 SGA和70 AGA进行了MRI。在额叶,基底神经节,中脑,小脑和扣带中定量纹理特征。使用基于判别模型的分类算法将纹理特征与临床诊断相关联。结果:在61个SGA(12个血管舒张)和52个AGA中实现了所有区域的感兴趣区域划分;这是用于TA特征提取的样本,可从AGA对SGA进行分类,SGA与AGA比较的准确度为90.9%至98.9%,而血管舒张SGA与AGA的比较准确度为93.6至100%。结论:这项研究表明TA可以检测SGA胎儿的脑部差异。这支持了SGA胎儿大脑微结构变化的存在。

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