1. Curved-Full-Field OCT for high-resolution imaging of living human retina over a large field-of-view

    Curved-Full-Field OCT for high-resolution imaging of living human retina over a large field-of-view

    Allying high-resolution with a large field-of-view (FOV) is of great importance in the fields of biology and medicine [1, 2, 3], but particularly challenging when imaging non-flat living samples such as the human retina. Indeed, high-resolution is normally achieved with adaptive optics (AO) and scanning methods, which considerably reduce the useful FOV and increase the system complexity. An alternative technique is time-domain Full-Field Optical Coherence Tomography (FF-OCT) [4, 5], which has already shown its potential for in-vivo high-resolution retinal imaging [6]. Here, we introduce curved-field FF-OCT, capable of matching the coherence gate geometry to the sample curvature, thus achieving a ...

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