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Human embryonic growth and development of the cerebellum using 3-dimensional ultrasound and virtual reality

机译:使用3D超声和虚拟现实技术的人类胚胎小脑的生长和发育

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The aim of our study was to evaluate the first trimester cerebellar growth and development using 2 different measuring techniques: 3-dimensional (3D) and virtual reality (VR) ultrasound visualization. The cerebellum measurements were related to gestational age (GA) and crown-rump length (CRL). Finally, the reproducibility of both the methods was tested. In a prospective cohort study, we collected 630 first trimester, serially obtained, 3D ultrasound scans of 112 uncomplicated pregnancies between 7 + 0 and 12 + 6 weeks of GA. Only scans with high-quality images of the fossa posterior were selected for the analysis. Measurements were performed offline in the coronal plane using 3D (4D view) and VR (V-Scope) software. The VR enables the observer to use all available dimensions in a data set by visualizing the volume as a "hologram." Total cerebellar diameter, left, and right hemispheric diameter, and thickness were measured using both the techniques. All measurements were performed 3 times and means were used in repeated measurements analysis. After exclusion criteria were applied 177 (28%) 3D data sets were available for further analysis. The median GA was 10 + 0 weeks and the median CRL was 31.4 mm (range: 5.2-79.0 mm). The cerebellar parameters could be measured from 7 gestational weeks onward. The total cerebellar diameter increased from 2.2 mm at 7 weeks of GA to 13.9 mm at 12 weeks of GA using VR and from 2.2 to 13.8 mm using 3D ultrasound. The reproducibility, established in a subset of 35 data sets, resulted in intraclass correlation coefficient values ≥0.98. It can be concluded that cerebellar measurements performed by the 2 methods proved to be reproducible and comparable with each other. However, VR - using all three dimensions - provides a superior method for the visualization of the cerebellum. The constructed reference values can be used to study normal and abnormal cerebellar growth and development.
机译:我们研究的目的是使用2种不同的测量技术来评估孕早期小脑的生长和发育:3维(3D)和虚拟现实(VR)超声可视化。小脑测量值与胎龄(GA)和冠臀长度(CRL)相关。最后,测试了这两种方法的重现性。在一项前瞻性队列研究中,我们收集了630个连续三个月的头三个月3D超声,对112例在GA 7 + 0至12 + 6周之间的单纯妊娠进行了3D超声检查。仅选择具有后颅窝高质量图像的扫描进行分析。使用3D(4D视图)和VR(V-Scope)软件在冠状平面中离线进行测量。通过将体积可视化为“全息图”,VR使观察者可以使用数据集中的所有可用尺寸。使用这两种技术测量小脑的总直径,左右半球的直径和厚度。所有测量均进行了3次,均值用于重复测量分析。应用排除标准后,有177个(28%)3D数据集可用于进一步分析。中位GA为10 + 0周,中位CRL为31.4毫米(范围:5.2-79.0毫米)。小脑参数可以从妊娠7周开始测量。小脑的总直径从使用GA的第7周的2.2 mm增加到使用GA的第12周的13.9 mm,使用3D超声从2.2增加到13.8 mm。在35个数据集的子集中建立的可重复性导致类内相关系数值≥0.98。可以得出结论,用这两种方法进行的小脑测量证明是可重复的,并且可以相互比较。然而,VR(使用所有三个维度)为小脑的可视化提供了一种出色的方法。构建的参考值可用于研究正常和异常小脑的生长和发育。

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