bioRxiv · 10.1101/504472
Extended field-of-view ultrathin microendoscopes with built-in aberration correction for high-resolution imaging with minimal invasiveness
Abstract
We present a novel approach to correct optical aberrations in ultrathin gradient-index rod lens-based endoscopes using microfabricated aspherical lenses. Corrected microendoscopes have up to 9 folds larger field-of-view compared to uncorrected probes. Using extended field-of-view (eFOV) microendoscopes, we report two-photon imaging of GCaMP6 signals in the mouse hippocampus in vivo with unprecedented combination of high spatiotemporal resolution and minimal invasiveness.
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Antonini, A., Bovetti, S., Moretti, C., Succol, F., Rajamanickam, V. P., Bertoncini, A., Liberale, C., Fellin, T.. 2018-12-21. Extended field-of-view ultrathin microendoscopes with built-in aberration correction for high-resolution imaging with minimal invasiveness. https://doi.org/10.1101/504472
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