首页> 外文会议>Coherence Domain Optical Methods and Optical Coherence Tomography in Biomedicine X; Progress in Biomedical Optics and Imaging; vol.7 no.2 >Adaptive optics - optical coherence tomography for in vivo retinal imaging: comparative analysis of two wavefront correctors
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Adaptive optics - optical coherence tomography for in vivo retinal imaging: comparative analysis of two wavefront correctors

机译:自适应光学-体内视网膜成像的光学相干断层扫描:两种波前校正器的比较分析

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Adaptive optics - optical coherence tomography (AO-OCT) has the potential to improve lateral resolution for OCT retinal imaging. Several reports have already described the successful combination of AO with a scanning confocal Fourier-domain OCT instrument to permit real-time three-dimensional (3D) imaging with high resolution (in all three dimensions). One of the key components that sets the performance limit of AO is the wavefront corrector. Several different wavefront correctors have been used in AO-OCT systems so far. In this paper we compare two commercially available wavefront correctors: an AOptix Bimorph deformable mirror (DM) and a Boston Micromachines Micro-Electro Mechanical System (MEMS) DM (used for the first time in an AO-OCT system). To simplify the analysis, we tested their performance for the correction of low-amplitude high-order aberrations (with minimal defocus and astigmatism). Results were obtained with an AO-OCT instrument constructed at UC Davis that combines state-of-the-art Fourier-domain OCT and an AO design to allow simultaneous testing of both mirrors without the need to modify the optical system.
机译:自适应光学-光学相干断层扫描(AO-OCT)具有提高OCT视网膜成像横向分辨率的潜力。一些报告已经描述了AO与扫描共焦傅里叶域OCT仪器的成功结合,可以实现高分辨率(在所有三个维度上)的实时三维(3D)成像。设置AO性能极限的关键组件之一是波阵面校正器。到目前为止,在AO-OCT系统中已经使用了几种不同的波前校正器。在本文中,我们比较了两种市售的波前校正器:AOptix Bimorph可变形反射镜(DM)和Boston Micromachines微电子机械系统(MEMS)DM(首次在AO-OCT系统中使用)。为了简化分析,我们测试了它们在校正低振幅高阶像差(具有最小的散焦和像散)方面的性能。使用UC戴维斯分校制造的AO-OCT仪器获得了结果,该仪器结合了最新的傅立叶域OCT和AO设计,可以同时测试两个反射镜,而无需修改光学系统。

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