Lichtenegger Antonia, Mukherjee Pradipta, Zhu Lida, Morishita Rion, Tomita Kiriko, Oida Daisuke, Leskovar Konrad, Abd El-Sadek Ibrahim, Makita Shuichi, Kirchberger Stefanie, Distel Martin, Baumann Bernhard, Yasuno Yoshiaki
Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Austria.
Computational Optics Group, Institute of Applied Physics, University of Tsukuba, Japan.
Biomed Opt Express. 2022 Mar 17;13(4):2202-2223. doi: 10.1364/BOE.455876. eCollection 2022 Apr 1.
The zebrafish is a valuable vertebrate animal model in pre-clinical cancer research. A Jones matrix optical coherence tomography (JM-OCT) prototype operating at 1310 nm and an intensity-based spectral-domain OCT setup at 840 nm were utilized to investigate adult wildtype and a tumor-developing zebrafish model. Various anatomical features were characterized based on their inherent scattering and polarization signature. A motorized translation stage in combination with the JM-OCT prototype enabled large field-of-view imaging to investigate adult zebrafish in a non-destructive way. The diseased animals exhibited tumor-related abnormalities in the brain and near the eye region. The scatter intensity, the attenuation coefficients and local polarization parameters such as the birefringence and the degree of polarization uniformity were analyzed to quantify differences in tumor versus control regions. The proof-of-concept study in a limited number of animals revealed a significant decrease in birefringence in tumors found in the brain and near the eye compared to control regions. The presented work showed the potential of OCT and JM-OCT as non-destructive, high-resolution, and real-time imaging modalities for pre-clinical research based on zebrafish.
斑马鱼是临床前癌症研究中有价值的脊椎动物模型。使用了一台工作在1310nm的琼斯矩阵光学相干断层扫描(JM - OCT)原型设备和一台840nm的基于强度的光谱域OCT装置来研究成年野生型和肿瘤发生斑马鱼模型。基于各种解剖特征固有的散射和偏振特征对其进行了表征。一个电动平移台与JM - OCT原型设备相结合,实现了大视野成像,以无损方式研究成年斑马鱼。患病动物在大脑和眼部区域附近表现出与肿瘤相关的异常。分析了散射强度、衰减系数以及局部偏振参数,如双折射和偏振均匀度,以量化肿瘤区域与对照区域的差异。在数量有限的动物身上进行的概念验证研究表明,与对照区域相比,在大脑和眼部附近发现的肿瘤中的双折射显著降低。所展示的工作表明了OCT和JM - OCT作为基于斑马鱼的临床前研究的无损、高分辨率和实时成像模式的潜力。