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Oxygen-Induced Retinopathy and Choroidopathy: In Vivo Longitudinal Observation of Vascular Changes Using OCTA

机译:氧致视网膜病变和脉络膜病变:使用OCTA进行血管变化的体内纵向观察

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Purpose : The purpose of this study was to assess the retinal and choroidal vasculatures of an oxygen-induced retinopathy (OIR) rat model using optical coherence tomography angiography (OCTA) as well as to verify the performance of OCTA for visualizing in vivo vascular alterations, longitudinally and quantitatively. Methods : To induce OIR, Sprague Dawley rat pups were incubated in an 80% oxygen chamber from postnatal day 1 (P1) to P11 and returned to room air. OCTA imaging was performed in six eyes at P15, P18, P21, and P24. All eyes were imaged with ex vivo retinal flat mount immunofluorescence microscopy for comparison with OCTA. The areas of the neovascular tufts, retinal vessel tortuosities and diameters, and vessel densities of different retinal and choroidal layers were quantified. Results : The neovascular tufts were observed in two OIR eyes. The tuft areas decreased spontaneously from P18 to P24. The increase in arterial tortuosity and venous dilation were observed in the OIR eyes at P15 and P18. The retardation of vascular developments was observed in the deep vascular plexus and the choroidal layer in the OIR group while the superficial vascular plexus did not show developmental delay. Conclusions : This study demonstrates an application of OCTA for quantitative and longitudinal studies on in vivo vascular alterations, including neovascular tufts, increase in arterial tortuosity, venous dilation, and developmental delay in the OIR rat model.
机译:目的:本研究的目的是使用光学相干断层扫描血管造影术(OCTA)评估氧诱导性视网膜病变(OIR)大鼠模型的视网膜和脉络膜脉管系统,并验证OCTA在可视化体内血管变化方面的性能,纵向和定量。方法:为诱导OIR,从出生后第1天(P1)到P11,将Sprague Dawley大鼠幼崽在80%的氧气室内孵育,然后放回室内。在P15,P18,P21和P24的六只眼中进行OCTA成像。用离体视网膜平板固定免疫荧光显微镜对所有眼睛进行成像,以与OCTA进行比较。定量新血管簇的面积,视网膜血管曲折和直径以及不同视网膜和脉络膜层的血管密度。结果:在两只OIR眼中观察到新生血管簇。簇绒面积从P18到P24自发减少。在P15和P18的OIR眼中观察到动脉曲折和静脉扩张的增加。在OIR组的深层血管丛和脉络膜层中观察到血管发育的延迟,而浅层血管丛未显示发育延迟。结论:这项研究证明了OCTA在OIR大鼠模型中对体内血管变化(包括新生血管簇,动脉曲折度增加,静脉扩张和发育延迟)的定量和纵向研究中的应用。

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