Shenzhen Maternity & Child Healthcare Hospital,The First School of Clinical Medicine, Southern Medical University, Guangzhou, China.
Department of Ultrasound, The First People's Hospital of Lanzhou City, Lanzhou, Lanzhou, China.
Ultraschall Med. 2023 Dec;44(6):e284-e295. doi: 10.1055/a-2122-6182. Epub 2023 Jul 4.
To demonstrate morphological alteration of the sulci and gyri on the convex surface in normal fetuses using innovative three-dimensional inversion and Crystalvue and Realisticvue (3D-ICRV) rendering technology.
3D fetal brain volumes were collected from low-risk singleton pregnancies between 15+0 and 35+6 gestational weeks. Volumes were acquired from the transthalamic axial plane by transabdominal ultrasonography and were then post-processed with Crystalvue, Realisticvue rendering software and inversion mode. Volume quality was assessed. The anatomic definition of the sulci and gyri was determined according to location and orientation. The morphology alteration and sulcus display rates were recorded in sequential order of gestational weeks. Follow-up data were collected in all cases.
294 of 300 fetuses (294 brain volumes) (98%) with qualified fetal brain volumes were included (n=294, median 27 gestational weeks). 6 fetuses with unsatisfactory 3D-ICRV image quality were excluded. The morphology of the sulci and gyri on the brain convex surface could be demonstrated clearly on 3D-ICRV images. The Sylvian fissure was the first structure to be recognized. From 25 to 30 weeks, other sulci and gyri became visible. An ascending trend in the display rate of the sulci was found in this period. Follow-up showed no detectable anomalies.
3D-ICRV rendering technology is different from traditional 3D ultrasound. It can provide vivid and intuitive prenatal visualization of the sulci and gyri on the brain surface. Moreover, it may offer new ideas for neurodevelopment exploration.
利用创新的三维反转和 Crystalvue 和 Realisticvue(3D-ICRV)渲染技术,显示正常胎儿凸面脑回沟的形态改变。
从 15+0 至 35+6 孕周的低危单胎妊娠中收集 3D 胎儿脑体积。通过经腹超声在经透明隔轴位采集体积,然后使用 Crystalvue、Realisticvue 渲染软件和反转模式进行后处理。评估体积质量。根据位置和方向确定脑回沟的解剖定义。记录形态改变和脑沟显示率,按孕周顺序进行连续记录。在所有病例中收集随访数据。
294 例(300 个脑体积)(98%)具有合格胎儿脑体积的胎儿(n=294,中位数 27 孕周)被纳入研究。6 例 3D-ICRV 图像质量不满意的胎儿被排除。3D-ICRV 图像可清晰显示脑凸面脑回沟的形态。大脑外侧裂是最早被识别的结构。从 25 周至 30 周,其他脑沟和脑回变得可见。在此期间,脑沟显示率呈上升趋势。随访未发现可检测到的异常。
3D-ICRV 渲染技术不同于传统的 3D 超声。它可以为产前提供生动直观的脑表面脑回沟可视化,并且可能为神经发育探索提供新的思路。