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1.
Opt Lett ; 43(3): 407-410, 2018 Feb 01.
Article in English | MEDLINE | ID: mdl-29400871

ABSTRACT

We propose a method that allows for a fast and accurate reconstruction of the refractive index profile of radially symmetric gradient index lenses fabricated by ion-exchange processes. The presented method enables the reconstruction of the profile up to the 10th polynomial order without direct spatially resolved refractive index measurements. It requires as input a working distance measurement at the paraxial limit and an accurate wavefront aberration measurement at full aperture. In addition, the approach combines the information about the optical behavior with the knowledge about the overall mass density changes of the glass rods during the ion exchange production processes to refine the reconstruction. Finally, the reconstruction of multiple profiles produced with different boundary conditions is demonstrated and confirms the functionality of the method.

2.
Biomed Opt Express ; 8(7): 3329-3342, 2017 Jul 01.
Article in English | MEDLINE | ID: mdl-28717570

ABSTRACT

We demonstrate a 60 mg light video-endomicroscope with a cylindrical shape of the rigid tip of only 1.6 mm diameter and 6.7 mm length. A novel implementation method of the illumination unit in the endomicroscope is presented. It allows for the illumination of the biological sample with fiber-coupled LED light at 455 nm and the imaging of the red-shifted fluorescence light above 500 nm in epi-direction. A large numerical aperture of 0.7 leads to a sub-cellular resolution and yields to high-contrast images within a field of view of 160 µm. A miniaturized chip-on-the-tip CMOS image sensor with more than 150,000 pixels captures the multicolor images at 30 fps. Considering size, plug-and-play capability, optical performance, flexibility and weight, we hence present a probe which sets a new benchmark in the field of epifluorescence endomicroscopes. Several ex-vivo and in-vivo experiments in rodents and humans suggest future application in biomedical fields, especially in the neuroscience community, as well as in medical applications targeting optical biopsies or the detection of cellular anomalies.

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