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Vasculogenesis and angiogenesis in the first trimester human placenta: an innovative 3D study using an immersive Virtual Reality system.

机译:早孕人类胎盘中的血管生成和血管生成:使用沉浸式虚拟现实系统的创新3D研究。

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First trimester human villous vascularization is mainly studied by conventional two-dimensional (2D) microscopy. With this (2D) technique it is not possible to observe the spatial arrangement of the haemangioblastic cords and vessels, transition of cords into vessels and the transition of vasculogenesis to angiogenesis. The Confocal Laser Scanning Microscopy (CLSM) allows for a three-dimensional (3D) reconstruction of images of early pregnancy villous vascularization. These 3D reconstructions, however, are normally analyzed on a 2D medium, lacking depth perception. We performed a descriptive morphologic study, using an immersive Virtual Reality system to utilize the full third dimension completely. This innovative 3D technique visualizes 3D datasets as enlarged 3D holograms and provided detailed insight in the spatial arrangement of first trimester villous vascularization, the beginning of lumen formation within various junctions of haemangioblastic cords between 5 and 7 weeks gestational age and in the gradual transition of vasculogenesis to angiogenesis. This innovative immersive Virtual Reality system enables new perspectives for vascular research and will be implemented for future investigation.
机译:孕早期人类绒毛状血管形成主要通过常规的二维(2D)显微镜进行研究。使用这种(2D)技术,不可能观察到血管母细胞性脐带和血管的空间排列,脐带向血管的过渡以及血管生成向血管生成的过渡。共聚焦激光扫描显微镜(CLSM)可以对早期妊娠绒毛血管化图像进行三维(3D)重建。但是,通常在缺乏深度感知的2D介质上分析这些3D重建。我们使用沉浸式虚拟现实系统进行了描述性形态学研究,以完全利用整个三维空间。这项创新的3D技术将3D数据集可视化为放大的3D全息图,并提供了有关妊娠早期绒毛状血管形成的空间排列,孕周5至7周之间的成血管成纤维索的不同结节内腔形成开始以及血管生成逐渐过渡的详细见解。血管生成。这种创新的沉浸式虚拟现实系统为血管研究提供了新的视角,并将用于未来的研究。

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