首页> 美国卫生研究院文献>International Journal of Molecular Sciences >High Resolution Multimodal Photoacoustic Microscopy and Optical Coherence Tomography Visualization of Choroidal Vascular Occlusion
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High Resolution Multimodal Photoacoustic Microscopy and Optical Coherence Tomography Visualization of Choroidal Vascular Occlusion

机译:高分辨率多峰光声显微镜和脉络膜血管闭塞的光学相干断层扫描可视化

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摘要

Photoacoustic microscopy is a novel, non-ionizing, non-invasive imaging technology that evaluates tissue absorption of short-pulsed light through the sound waves emitted by the tissue and has numerous biomedical applications. In this study, a custom-built multimodal imaging system, including photoacoustic microscopy (PAM) and optical coherence tomography (OCT), has been developed to evaluate choroidal vascular occlusion (CVO). CVO was performed on three living rabbits using laser photocoagulation. Longitudinal imaging of CVO was obtained using multiple imaging tools such as color fundus photography, fluorescein angiography, indocyanine green angiography (ICGA), OCT, and PAM. PAM images were acquired at different wavelengths, ranging from 532 to 700 nm. The results demonstrate that the CVO was clearly observed on PAM in both two dimensions (2D) and 3D with high resolution longitudinally over 28 days. In addition, the location and margin of the CVO were distinguished from the surrounding choroidal vasculature after the injection of ICG contrast agent. PAM imaging was achieved using a laser energy of approximately 80 nJ, which is about half of the American National Standards Institute safety limit. The proposed imaging technique may provide a potential tool for the evaluation of different chorioretinal vascular disease pathogeneses and other biological studies.
机译:光声显微镜是一种新颖的非电离,非侵入性成像技术,可通过组织发射的声波来评估短脉冲光的组织吸收,并具有许多生物医学应用。在本研究中,已经开发了一种定制的多模式成像系统,包括光声显微镜(PAM)和光学相干断层扫描(OCT),以评估脉络膜血管闭塞(CVO)。使用激光光凝在三个活兔中进行CVO。使用多重成像工具获得CVO的纵向成像,例如颜色眼底摄影,荧光素血管造影,吲哚菁绿色血管造影(ICGA),OCT和PAM。 PAM图像在不同的波长下获得,范围为532至700nm。结果表明,在两个维度(2D)和3D中,在拟分中清楚地观察到CVO,高分辨率超过28天。此外,在注射ICG造影剂后,CVO的位置和边缘与周围的脉络膜脉管有所不同。使用大约80 nJ的激光能量实现PAM成像,这是美国国家标准研究所安全极限的一半。该拟议的成像技术可以提供用于评估不同泡流血管疾病病原因和其他生物学研究的潜在工具。

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