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首页> 外文期刊>Scientific reports. >High-resolution multimodal photoacoustic microscopy and optical coherence tomography image-guided laser induced branch retinal vein occlusion in living rabbits
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High-resolution multimodal photoacoustic microscopy and optical coherence tomography image-guided laser induced branch retinal vein occlusion in living rabbits

机译:高分辨率多峰光声显微镜和光学相干断层扫描图像引导激光诱导分支视网膜静脉闭塞在生活兔子

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摘要

Joint high-resolution multimodal photoacoustic microscopy (PAM) and optical coherence tomography (OCT) was developed to improve the efficiency for visualizing newly developed retinal neovascularization (RNV) and to monitor the dynamic changes of retinal vein occlusion (RVO) in living rabbits. The RNV and RVO models were created in New Zealand rabbits by Rose Bengal laser-induced RVO. Dual modalities imaging equipment, including color fundus photography, fluorescein angiography (FA), OCT, and PAM, was used to image and assess the changes of retinal vasculature. In vivo experimental results exhibited that not only the treatment boundaries and the position of the occluded vasculature but also the structure of individual RNV were markedly observed using PAM platform with great resolution and high image contrast. The laser light energy of 80 nJ was used to induce photoacoustic signal, which is approximately half the energy of the American National Standards Institute safety limit. A cross-sectional structure of RNV was identified with the OCT modality. Furthermore, vibrant transformations in the RNV and the retinal morphology were examined at different times after laser occlusion: days 4, 28, 35, 49, and 90. PAM revealed high contrast and high resolution vascular imaging of the retina and choroid with amplified penetration depth. Through the present custom-built imaging system, both RNV and RVO can be reconstructed and observed in two and three dimensions. A unique dual modality A unique dual modality PAM and OCT can help precisely visualize and distinguish individual microvessels, microvessel depth, and the surrounding anatomy. Thus, the proposed multimodal ocular imaging platform may offer a potential equipment to enhance classification of microvasculature in a reliable and proficient manner in larger rabbit eyes.
机译:开发了联合高分辨率多峰光声显微镜(PAM)和光学相干断层扫描(OCT)以提高新出现的视网膜新生血管(RNV)的效率,并监测生活兔中视网膜静脉闭塞(RVO)的动态变化。 RNV和RVO模型是由玫瑰孟加拉激光诱导的RVO在新西兰兔子创建的。双模成像设备,包括彩色眼底摄影,荧光素血管造影(FA),OCT和PAM,用于图像和评估视网膜脉管系统的变化。在体内实验结果表明,不仅具有封闭脉管系统的治疗边界和位置,而且使用PAM平台具有良好的分辨率和高图像对比度明显地观察到单个RNV的结构。 80 NJ的激光光能用于诱导光声信号,这是美国国家标准研究所安全极限的大约一半的一半。用OCT模态鉴定RNV的横截面结构。此外,在激光闭塞后,在不同时间检查RNV和视网膜形态的活化转化:第4,28,35,49和90.PAM揭示了视网膜和脉络膜的高对比度和高分辨率血管成像,具有扩增的渗透深度。通过目前的定制成像系统,可以在两个和三维中重建和观察到RNV和RVO。独特的双号方式是独特的双模庞卡和OCT可以帮助精确地可视化和区分各个微孔,微孔深度和周围的解剖结构。因此,所提出的多模式眼镜成像平台可以提供潜在的设备,以在较大的兔眼中以可靠和精细的方式增强微血管系统的分类。

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