横向色差会限制AO-OCT视网膜成像的性能吗?

Donald T. Miller, B. Cense, Erik Koperda, R. Jonnal, Weihua Gao
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引用次数: 2

摘要

由于具有前所未有的3D分辨率,自适应光学(AO)和光学相干断层扫描(OCT)的结合已成功应用于体内视网膜成像。然而,眼睛不仅有单色差,这是由AO纠正的,但也有实质性的色差,这不是。为了纠正色差,消色差透镜最近被用于超高分辨率AO-OCT仪器。这些镜片,像他们的早期前辈的视力改善,有效地纠正了眼睛的纵向色差(LCA),但没有尝试在互补横向色差(TCA)。这引起了一个重要的关注,即TCA对AO-OCT和OCT视网膜相机的3D分辨率的降低影响。为了解决这个问题,我们对高分辨率视网膜成像的TCA进行了理论分析。理论分析包括视网膜成像TCA的两个主要因素:(1)眼侧定位错误和(2)离轴成像。分析预测了TCA对视网膜成像的影响程度,以及在何种条件下TCA可以保持在AO-OCT和OCT的可接受水平。选择了几个与常见OCT光源对应的近红外波段。
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Does transverse chromatic aberration limit performance of AO-OCT retinal imaging?
The combination of adaptive optics (AO) and optical coherence tomography (OCT) has been successfully applied to in vivo retinal imaging, motivated by the potential of unprecedented 3D resolution. The eye, however, not only suffers from monochromatic aberrations, which are corrected by AO, but also substantial chromatic aberrations, which are not. To correct chromatic aberrations, achromatizing lenses have been recently employed in ultrahigh resolution AO-OCT instruments. These lenses, like their earlier predecessors for vision improvement, effectively correct the eye's longitudinal chromatic aberration (LCA), but make no attempt at the complementary transverse chromatic aberration (TCA). This raises an important concern as to the degrading impact of TCA on the 3D resolution of AO-OCT and OCT retina cameras. To address this, we undertook a theoretical analysis of TCA for high-resolution retinal imaging. The theoretical analysis included the two primary contributors of TCA for retinal imaging: (1) errors in the lateral positioning of the eye and (2) off-axis imaging. The analysis predicted the extent to which TCA impacts retinal imaging and the conditions under which it can be held at acceptable levels for AO-OCT and OCT. Several near-infrared bands were chosen that correspond to common OCT light sources.
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