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Why choroid vessels appear dark in clinical OCT images

机译:为什么脉络膜血管在临床OCT图像中显得较暗

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With the onset of clinically available spectral domain (SD-OCT) and swept source (SS-OCT) systems, clinicians are now easily able to recognize sub retinal microstructure and vascularization in the choroidal and scleral regions. As the blood-rich choroid supplies nutrients to the upper retinal layers, the ability to monitor choroid function accurately is of vital importance for clinical assessment of retinal health. However, the physical appearance of the choroid blood vessels (darker under a healthy Retinal Pigmented Epithelium (RPE) compared to regions displaying an RPE atrophic lesion) has led to confusion within the OCT ophthalmic community. The differences in appearance between each region in the OCT image may be interpreted as different vascular patterns when the vascular networks are in fact very similar. To explain this circumstance, we simulate light scattering phenomena in the RPE and Choroid complexes using the finite difference time domain (FDTD) method. The simulation results are then used to describe and validate imaging features in a controlled multi-layered tissue phantom designed to replicate human RPE, choroid, and whole blood microstructure. Essentially, the results indicate that the strength of the OCT signal from choroidal vasculature is dependent on the health and function of the RPE, and may not necessarily directly reflect the health and function of the choroidal vasculature.
机译:随着临床可用频谱域(SD-OCT)和扫频源(SS-OCT)系统的出现,临床医生现在能够轻松识别脉络膜和巩膜区域的视网膜下微结构和血管形成。由于血液丰富的脉络膜为视网膜上层提供营养,因此准确监测脉络膜功能的能力对于临床评估视网膜健康至关重要。然而,脉络膜血管的物理外观(与显示RPE萎缩性病变的区域相比,在健康的视网膜色素上皮(RPE)下更暗)已导致OCT眼科社区内的混乱。当血管网络实际上非常相似时,可以将OCT图像中每个区域之间的外观差异解释为不同的血管模式。为了解释这种情况,我们使用时差有限时域(FDTD)方法模拟RPE和脉络膜络合物中的光散射现象。然后,将模拟结果用于描述和验证受控多层组织体模中的成像特征,该模型设计为复制人RPE,脉络膜和全血微结构。本质上,结果表明脉络膜脉管系统的OCT信号强度取决于RPE的健康和功能,并不一定直接反映脉络膜脉管系统的健康和功能。

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