An innovative multi-modal retinal imaging system for in vivo retinal detection in small animals

Zhengyuan Tang, Tianze Zhao, Ji Ren, Kuan Zhang, Qi Yin, Teng Zhang, Hui Zhang, Tianyu Dong, Pengfei Zhang, Jie Zhang
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Abstract

This paper presents an innovative retinal imaging system tailored for in vivo fundus detection in small animals. This system integrates Scanning Laser Ophthalmoscopy (SLO) and optical Coherence Tomography (OCT) techniques, enabling the simultaneous generation of images from various modalities, including SLO reflectance, SLO fluorescein angiogram, OCT, and OCT angiogram. The existing multi-modal retinal imaging systems generally encounter limitations such as the inability to detect peripheral lesion areas attributed to small Field of View (FOV) design and susceptibility to sample motion due to slow data acquisition speed. To address these challenges, it’s essential to underscore that this proposed system offers a range of notable advantages, including its compact design, the capacity for widefield imaging with a FOV of up to 100°, and a rapid OCT A-scan rate of 250 kHz, notably exceeding the capabilities of pre-existing multi-modal retinal imaging systems. Validation of the system involved imaging the eyes of normal wild-type mice and diseased mice afflicted with retinal detachment and choroidal neovascularization (CNV). The favorable imaging results demonstrate the system’s reliability in identifying retinal lesions in small animals.
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一种创新的多模态视网膜成像系统,用于小动物体内视网膜检测
本文提出了一种创新的视网膜成像系统,专门用于小动物体内眼底检测。该系统集成了扫描激光眼科检查(SLO)和光学相干断层扫描(OCT)技术,能够同时生成各种模式的图像,包括SLO反射、SLO荧光素血管造影、OCT和OCT血管造影。现有的多模态视网膜成像系统普遍存在局限性,如由于视场设计小而无法检测周围病变区域,以及由于数据采集速度慢而容易受到样本运动的影响。为了应对这些挑战,必须强调的是,该系统提供了一系列显着的优势,包括其紧凑的设计,视场高达100°的宽视场成像能力,以及250 kHz的快速OCT a扫描速率,明显超过了现有的多模态视网膜成像系统的能力。该系统的验证包括对正常野生型小鼠和患有视网膜脱离和脉络膜新生血管(CNV)的患病小鼠的眼睛进行成像。良好的成像结果证明了该系统在识别小动物视网膜病变方面的可靠性。
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