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Scattering angle resolved optical coherence tomography for in vivo murine retinal imaging

机译:用于体内鼠视网膜成像的散射角分辨光学相干断层扫描

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Optical coherence tomography (OCT) retinal imaging contributes to understanding central nervous system (CNS) diseases because the eye is an anatomical "window to the brain" with direct optical access to nonmylenated retinal ganglion cells. However, many CNS diseases are associated with neuronal changes beyond the resolution of standard OCT retinal imaging systems. Though studies have shown the utility of scattering angle resolved (SAR) OCT for particle sizing and detecting disease states ex vivo, a compact SAR-OCT system for in vivo rodent retinal imaging has not previously been reported. We report a fiber-based SAR-OCT system (swept source at 1310 nm ± 65 nm, 100 kHz scan rate) for mouse retinal imaging with a partial glass window (center aperture) for angular discrimination of backscattered light. This design incorporates a dual-axis MEMS mirror conjugate to the ocular pupil plane and a high collection efficiency objective. A muring retina is imaged during euthanasia, and the proposed SAR-index is examined versus time. Results show a positive correlation between the SAR-index and the sub-cellular hypoxic response of neurons to isoflurane overdose during euthanasia. The proposed SAR-OCT design and image process technique offer a contrast mechanism able to detect sub-resolution neuronal changes for murine retinal imaging.
机译:光学相干断层扫描(OCT)视网膜成像有助于了解中枢神经系统(CNS)疾病,因为眼睛是解剖学上的“通往大脑的窗口”,可以直接光学接触非髓样视网膜神经节细胞。但是,许多中枢神经系统疾病与神经元变化有关,超出了标准OCT视网膜成像系统的分辨率。尽管研究表明散射角分辨(SAR)OCT可用于离体确定粒径和检测疾病状态,但以前尚未报道用于体内啮齿类动物视网膜成像的紧凑型SAR-OCT系统。我们报告了基于光纤的SAR-OCT系统(扫描源在1310 nm±65 nm,扫描速率为100 kHz),用于小鼠视网膜成像,带有部分玻璃窗(中心孔径),用于反向散射光的角度识别。该设计将双轴MEMS反射镜与眼瞳平面结合在一起,并具有高收集效率的物镜。在安乐死期间对正在愈合的视网膜成像,并检查建议的SAR指数与时间的关系。结果显示,在安乐死期间,SAR指数与神经元对异氟烷过量的亚细胞低氧反应之间呈正相关。提出的SAR-OCT设计和图像处理技术提供了一种对比机制,能够检测鼠视网膜成像的亚分辨率神经元变化。

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