Lichtenegger Antonia, Baumann Bernhard, Yasuno Yoshiaki
Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, 1090 Vienna, Austria.
Computational Optics Group, University of Tsukuba, Tsukuba 305-8573, Japan.
Bioengineering (Basel). 2022 Dec 20;10(1):5. doi: 10.3390/bioengineering10010005.
The zebrafish is an established vertebrae model in the field of biomedical research. With its small size, rapid maturation time and semi-transparency at early development stages, it has proven to be an important animal model, especially for high-throughput studies. Three-dimensional, high-resolution, non-destructive and label-free imaging techniques are perfectly suited to investigate these animals over various development stages. Optical coherence tomography (OCT) is an interferometric-based optical imaging technique that has revolutionized the diagnostic possibilities in the field of ophthalmology and has proven to be a powerful tool for many microscopic applications. Recently, OCT found its way into state-of-the-art zebrafish-based research. This review article gives an overview and a discussion of the relevant literature and an outlook for this emerging field.
斑马鱼是生物医学研究领域中一种成熟的脊椎动物模型。因其体型小、成熟时间短且在早期发育阶段具有半透明性,它已被证明是一种重要的动物模型,尤其适用于高通量研究。三维、高分辨率、非破坏性和无标记成像技术非常适合在斑马鱼的各个发育阶段对其进行研究。光学相干断层扫描(OCT)是一种基于干涉测量的光学成像技术,它彻底改变了眼科领域的诊断可能性,并已被证明是许多微观应用的强大工具。最近,OCT进入了基于斑马鱼的前沿研究领域。这篇综述文章对相关文献进行了概述和讨论,并对这个新兴领域进行了展望。