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Updated: Feb 13, 2026

Fluorescence Imaging with One-nanometer Accuracy FIONA
Published on: September 26, 2014
Axial Colocalization of Single Molecules with Nanometer Accuracy Using Metal-Induced Energy Transfer
Sebastian Isbaner1, Narain Karedla1,2, Izabela Kaminska3,4
1Third Institute of Physics - Biophysics , Georg August University , 37077 Göttingen , Germany.
Abstract:
Single-molecule localization based super-resolution microscopy has revolutionized optical microscopy and routinely allows for resolving structural details down to a few nanometers. However, there exists a rather large discrepancy between lateral and axial localization accuracy, the latter typically three to five times worse than the former. Here, we use single-molecule metal-induced energy transfer (smMIET) to localize single molecules along the optical axis, and to measure their axial distance with an accuracy of 5 nm. smMIET relies only on fluorescence lifetime measurements and does not require additional complex optical setups.
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