2015Unpublished venueRequires access

Mouse Retinal Imaging with Wavefront Sensorless Adaptive Optics

Marinko V. Šarunic

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Abstract

Wavefront Sensorless Adaptive Optics combined with Optical Coherence Tomography and fluorescence confocal Scanning Laser Ophthalmoscopy for structural and functional imaging of the mouse retina in-vivo using a MEMS deformable mirror and a novel adaptive lens.

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What this paper is about

Wavefront Sensorless Adaptive Optics combined with Optical Coherence Tomography and fluorescence confocal Scanning Laser Ophthalmoscopy for structural and functional imaging of the mouse retina in-vivo using a MEMS deformable mirror and a novel adaptive lens.

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Available abstract

Wavefront Sensorless Adaptive Optics combined with Optical Coherence Tomography and fluorescence confocal Scanning Laser Ophthalmoscopy for structural and functional imaging of the mouse retina in-vivo using a MEMS deformable mirror and a novel adaptive lens.

Key concepts: Adaptive optics, Deformable mirror, Wavefront, Scanning laser ophthalmoscopy, Optics, Optical coherence tomography, Wavefront sensor, Confocal

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