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First-order design of off-axis reflective ophthalmic adaptive optics systems using afocal telescopes

机译:采用AFOCAL望远镜的离轴反射眼科自适应光学系统的一级设计

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Scanning laser ophthalmoscopes (SLOs) and optical coherence tomography are the state-of-the-art retinal imaging instruments, and are essential for early and reliable diagnosis of eye disease. Recently, with the incorporation of adaptive optics (AO), these instruments have started to deliver near diffraction-limited performance in both humans and animal models, enabling the resolution of the retinal ganglion cell bodies, their processes, the cone photoreceptor and the retinal pigment epithelial cells mosaics. Unfortunately, these novel instruments have not delivered consistent performance across human subjects and animal models. One of the limitations of current instruments is the astigmatism in the pupil and imaging planes, which degrades image quality, by preventing the wavefront sensor from measuring aberrations with high spatial content. This astigmatism is introduced by the sequence of off-axis reflective elements, typically spherical mirrors, used for relaying pupil and imaging planes. Expressions for minimal astigmatism on the image and pupil planes in off-axis reflective afocal telescopes formed by pairs of spherical mirrors are presented. The formulas, derived from the marginal ray fans equation, are valid for small angles of incidence (≤l5°), and can be used to design laser cavities, spectrographs and vision adaptive optics systems. An example related to this last application is discussed.
机译:扫描激光眼科(SLO)和光学相干断层扫描是最先进的视网膜成像仪器,对于早期可靠的眼病诊断至关重要。最近,随着Adaptive Optics(AO)的加入,这些仪器已经开始在人类和动物模型中提供近衍射限制性的性能,从而能够分离视网膜神经节细胞体,它们的过程,锥形感光体和视网膜颜料上皮细胞马赛克。不幸的是,这些新颖的仪器在人类受试者和动物模型上没有提供一致的表现。目前仪器的局限性之一是瞳孔和成像平面中的散光,其通过防止波前传感器测量具有高空间内容的像差来降低图像质量。通过用于中继瞳孔和成像平面的偏离轴反射元件(通常是球形镜)的偏离轴反射元件序列引入这种散光。提出了通过成对的球形镜形成的图像和瞳孔平面上的图像和瞳孔平面上的最小散光的表达。源自边缘射线风扇方程的公式对于小的入射角(≤L5°)有效,并且可用于设计激光腔,光谱仪和视觉自适应光学系统。讨论了与此应用程序相关的示例。

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