Samsung Electro-Mechanics, Global Technology Center (GTC), Suwon, Republic of Korea.
Department of Otorhinolaryngology, Harvard Medical School, Boston, Massachusetts.
J Biophotonics. 2019 Jul;12(7):e201800481. doi: 10.1002/jbio.201800481. Epub 2019 Apr 29.
Recent progress in three-dimensional optical imaging techniques allows visualization of many comprehensive biological specimens. Optical clearing methods provide volumetric and quantitative information by overcoming the limited depth of light due to scattering. However, current imaging technologies mostly rely on the synthetic or genetic fluorescent labels, thus limits its application to whole-body visualization of generic mouse models. Here, we report a label-free optical projection tomography (LF-OPT) technique for quantitative whole mouse embryo imaging. LF-OPT is based on the attenuation contrast of light rather than fluorescence, and it utilizes projection imaging technique similar to computed tomography for visualizing the volumetric structure. We demonstrate this with a collection of mouse embryo morphologies in different stages using LF-OPT. Additionally, we extract quantitative organ information applicable toward high-throughput phenotype screening. Our results indicate that LF-OPT can provide multi-scale morphological information in various tissues including bone, which can be difficult in conventional optical imaging technique.
近年来,三维光学成像技术的进展使得对许多综合生物样本的可视化成为可能。光学透明化方法通过克服由于散射而导致的有限的光深度来提供体积和定量信息。然而,目前的成像技术主要依赖于合成或遗传荧光标记,因此限制了其在通用小鼠模型的全身可视化中的应用。在这里,我们报告了一种用于定量全鼠胚胎成像的无标记光投影层析成像(LF-OPT)技术。LF-OPT 基于光的衰减对比,而不是荧光,并且它利用类似于计算机断层扫描的投影成像技术来可视化体积结构。我们使用 LF-OPT 对不同阶段的一系列小鼠胚胎形态进行了演示。此外,我们提取了适用于高通量表型筛选的定量器官信息。我们的结果表明,LF-OPT 可以提供包括骨骼在内的各种组织中的多尺度形态信息,这在传统的光学成像技术中可能比较困难。