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Imaging of eye tumor in the mouse model of retinoblastoma with spectral-domain optical coherence tomography

机译:光谱域光学相干断层扫描在视网膜母细胞瘤小鼠模型中对眼部肿瘤的成像

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摘要

Noninvasive in vivo examination of the rodent retina without sacrificing the animal is the key to being able to perform longitudinal studies. This allows the monitoring of disease progression and the response to therapies through its entire course in individual animal. A high-speed high resolution three-dimensional spectral-domain OCT is built for non-contact in vivo imaging of rodent retina. The system is able to acquire high quality 3D images of the rodent retina in 2.7 seconds (total imaging time is ~5 minutes). The system was tested on mice with normal retina (B6/SJLF2), mouse model for photoreceptor degeneration (Rho~(-/-)), and mouse model for retinoblastoma (LH_(BETA)T_(AG)). For the first time to our knowledge, 3D image of the tumor in retinoblastoma mouse model was successfully imaged in vivo. By segmenting the tumor boundaries in each frame of the OCT image the volume of the tumor was successfully calculated.
机译:在不牺牲动物的前提下对啮齿类动物视网膜进行无创体内检查是能够进行纵向研究的关键。这允许在单个动物的整个过程中监测疾病的进展和对治疗的反应。高速高分辨率三维光谱域OCT用于啮齿类动物视网膜的非接触式体内成像。该系统能够在2.7秒内获取啮齿类动物视网膜的高质量3D图像(总成像时间约为5分钟)。该系统在具有正常视网膜(B6 / SJLF2),感光细胞变性的小鼠模型(Rho〜(-/-))和视网膜母细胞瘤的小鼠模型(LH_(BETA)T_(AG))的小鼠上进行了测试。据我们所知,视网膜母细胞瘤小鼠模型中肿瘤的3D图像已在体内成功成像。通过在OCT图像的每一帧中分割肿瘤边界,可以成功计算出肿瘤的体积。

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