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首页> 外文期刊>Industrial and organizational psychology >Optical coherence tomography as a noninvasive 3D real time imaging tool for the rapid evaluation of phenotypic variations in insect embryonic development
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Optical coherence tomography as a noninvasive 3D real time imaging tool for the rapid evaluation of phenotypic variations in insect embryonic development

机译:光学相干断层扫描作为非侵入式3D实时成像工具,用于快速评估昆虫胚胎发育的表型变化

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Noninvasive visualization of embryos at different development stages is crucial for the understanding of the basic developmental biology. It is therefore desirable to have an imaging tool capable of rapidly evaluating the effects of gene manipulation or genome editing in developing embryos for the studies of gene functions and genetic engineering. Here, we propose and demonstrate a novel use of optical coherence tomography (OCT) to noninvasively exam the embryonic development of the migratory locusts in real time with 3-dimensional (3D) view capability. In particular, we obtain the sufficiently high spatial resolution tomographic 2D and 3D images of live locust embryos throughout their development processes. We show that not only we are able to noninvasively observe all previously known forms of blastokinesis as an embryo develops, such as anatrepsis, katatrepsis, revolution, rotation and diapauses, and determine their precise occurring time or duration, but also discover an unreported rotation form we named "twist." In addition, with the OCT images we determined the exact occurring time of diapauses of the locusts from Tibetan plateau for the first time. Finally, we demonstrate that OCT systems can be used to rapidly capture the development defects of genetically modified embryos in which certain genes essential for embryonic development were suppressed by RNA interference. Our work shows that OCT is an enabling imaging tool with sufficient spatial resolution for the rapid evaluation of embryonic variations of small animals.
机译:在不同发展阶段的胚胎非侵蚀性可视化对于对基本发展生物学的理解至关重要。因此,希望具有能够快速评估基因操纵或基因组编辑在发育基因功能和基因工程研究中的胚胎中的基因操纵或基因组编辑的效果的成像工具。在这里,我们提出并展示了一种新颖的光学相干断层扫描(OCT),以实时地使用三维(3D)观察能力实时考试迁移蝗虫的胚胎发育。特别地,我们在其开发过程中获得了活蝗虫胚胎的足够高的空间分辨率断层2D和3D图像。我们认为,不仅我们能够将所有以前已知的Blastokinesis的Blastokinesis作为胚胎发育,例如Anatrepsis,Katatropsis,Refolution,Rotation和Defavaes,并且确定其精确发生的时间或持续时间,而且还发现未报告的旋转形式我们命名为“扭曲”。此外,对于OCT图像,我们首次确定了来自藏高原的蝗虫的精确发生时间。最后,我们证明了OCT系统可用于迅速捕获基因改性胚胎的发育缺陷,其中通过RNA干扰抑制了胚胎发育至关重要的某些基因。我们的工作表明,OCT是一个有利的成像工具,具有足够的空间分辨率,用于快速评估小动物的胚胎变化。

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