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High-speed volumetric imaging of cone photoreceptors with adaptive optics spectral-domain optical coherence tomography

机译:锥光感受器的高速体积成像与自适应光学光谱域光学相干断层扫描

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摘要

We report the first observations of the three-dimensional morphology of cone photoreceptors in the living human retina. Images were acquired with a high-speed adaptive optics (AO) spectral-domain optical coherence tomography (SD-OCT) camera. The AO system consisted of a Shack-Hartmann wavefront sensor and bimorph mirror (AOptix) that measured and corrected the ocular and system aberrations at a closed-loop rate of 12 Hz. The bimorph mirror was positioned between the XY mechanical scanners and the subject’s eye. The SD-OCT system consisted of a superluminescent diode and a 512 pixel line scan charge-coupled device (CCD) that acquired 75,000 A-scans/s. This rate is more than two times faster than that previously reported. Retinal motion artifacts were minimized by quickly acquiring small volume images of the retina with and without AO compensation. Camera sensitivity was sufficient to detect reflections from all major retinal layers. The regular distribution of bright spots observed within C-scans at the inner segment / outer segment (IS/OS) junctions and at the posterior tips of the OS were found to be highly correlated with one another and with the expected cone spacing. No correlation was found between the posterior tips of the OS and the other retinal layers examined, including the retinal pigment epithelium.
机译:我们报告了在活的人类视网膜中锥体感光体的三维形态的第一个观察结果。使用高速自适应光学(AO)光谱域光学相干断层扫描(SD-OCT)相机获取图像。 AO系统由Shack-Hartmann波前传感器和双压电晶片反射镜(AOptix)组成,它们以12 Hz的闭环速率测量和校正眼和系统像差。双压电晶片反射镜位于XY机械扫描仪和对象的眼睛之间。 SD-OCT系统由一个超发光二极管和一个512像素线扫描电荷耦合器件(CCD)组成,该器件每秒可进行75,000次A扫描。这个速度比以前报告的速度快两倍以上。通过快速采集具有和不具有AO补偿的视网膜小体积图像,可以将视网膜运动伪影最小化。相机灵敏度足以检测所有主要视网膜层的反射。发现在C扫描内段/外段(IS / OS)交界处和OS的后尖端处观察到的亮点的规则分布与彼此以及预期的圆锥间距高度相关。在OS的后尖端与所检查的其他视网膜层(包括视网膜色素上皮)之间未发现相关性。

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