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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Two-dimensional and three-dimensional time-lapse microscopic magnetic resonance imaging of Xenopus gastrulation movements using intrinsic tissue-specific contrast.
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Two-dimensional and three-dimensional time-lapse microscopic magnetic resonance imaging of Xenopus gastrulation movements using intrinsic tissue-specific contrast.

机译:爪蟾胃动运动的二维和三维延时显微镜磁共振成像,使用固有的组织特异性对比。

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摘要

The amphibian embryo undergoes radical tissue transformations during blastula and gastrula stages, but live observation of internal morphogenetic events by optical microscopy is not feasible due to the opacity of the early embryo. Here, we report on the use of microscopic magnetic resonance imaging (MRI) to directly follow morphogenetic movements during blastula and gastrula stages of the Xenopus laevis embryo. We compare three different MRI modalities that take advantage of the intrinsic contrast present in embryonic tissues: three-dimensional (3D) fat-imaging, 3D water-imaging, and 2D high-speed high-resolution imaging of early embryonic stages. We show that the features revealed by the intrinsic contrast correlate with the histological structure of the embryo. Using this tissue specific intrinsic contrast, the main embryonic tissues and internal tissue movements as well as archenteron invagination can be differentiated without cell labeling. We present 2D and 3D time-lapse sequences of early Xenopusembryonic development, spanning the stages from early blastula to the end of gastrula, which show the complex internal rearrangements of gastrulation in essentially real-time.
机译:两栖动物胚胎在囊胚期和胃胚期经历了彻底的组织转化,但是由于早期胚胎的不透明性,通过光学显微镜对内部形态发生事件进行实时观察是不可行的。在这里,我们报告使用显微镜磁共振成像(MRI)直接跟踪非洲爪蟾胚胎的囊胚期和胃胚期的形态发生运动。我们比较了三种不同的MRI模式,这些模式利用了胚胎组织中存在的固有对比度:早期胚胎阶段的三维(3D)脂肪成像,3D水成像和2D高速高分辨率成像。我们表明内在对比揭示的特征与胚胎的组织学结构相关。使用这种组织特异性的内在对比,无需细胞标记就可以区分主要的胚胎组织和内部组织的运动以及肠arch虫的内陷。我们介绍了Xenopusembryonic早期发育的2D和3D延时序列,涵盖了从胚泡早期到胃下末期的各个阶段,这些过程基本实时地显示了胃泌素的复杂内部重排。

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