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Temporal changes of human cone photoreceptors observed in vivo with SLO/OCT

机译:SLO / OCT在体内观察到的人类视锥细胞感光器的时间变化

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摘要

In this study we use our previously introduced scanning laser ophthalmoscope (SLO) / transverse scanning optical coherence tomography (TS-OCT) instrument to investigate long term changes in cone photoreceptors. The instrument is capable to provide 3D information of the human cone photoreceptors with negligible eye motion artifacts due to an implemented 3D motion correction on a cellular level. This allows for an in vivo investigation of exactly the same location on the retina with cellular resolution over several days. Temporal changes in the backscattered intensity are observed and quantified within the junction between inner and outer segments of cone photoreceptors, the cone outer segments, the end tips of cone photoreceptors and the retinal pigment epithelium. Furthermore, the length of individual cone outer segments is measured and observed over time. We show, to the best of our knowledge for the first time, that bright reflection spots which are located within the outer segment of cone photoreceptors change their position when observed over extended time periods. The average measured bright reflection spot motion speed corresponds well to the expected cone growth speed. We believe that this observation can be associated with the first direct in vivo imaging of the cone renewal process.
机译:在这项研究中,我们使用我们先前推出的扫描激光检眼镜(SLO)/横向扫描光学相干断层扫描(TS-OCT)仪器来研究锥体感光器的长期变化。由于在细胞水平上实施了3D运动校正,该仪器能够为人视锥细胞的3D信息提供可忽略的眼睛运动伪影。这允许在几天内通过细胞分辨率对视网膜上完全相同的位置进行体内研究。在锥形感光体的内部和外部区段,锥形外部区段,锥形感光体的末端和视网膜色素上皮之间的交界处,观察并定量了反向散射强度的时间变化。此外,随时间测量并观察各个圆锥形外部段的长度。据我们所知,这是第一次显示,当长时间观察时,位于锥形感光体外部的明亮反射点会改变位置。平均测得的亮反射点运动速度与预期的视锥生长速度很好地对应。我们认为,这种观察结果可能与锥体更新过程的首次直接体内成像有关。

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