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20172026
most citedComplex-valued scatter compensation in nonlinear microscopy

6 citations · 9 across the 6 of their papers we have counts for

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physics.optics2026

Fast dynamic wavefront correction for multi-photon microscopy with a high resolution MEMS phase-only modulator

Juan David Muñoz-Bolaños, Eva Ernst, Maria Borozdova +6

Multi-photon microscopy is a powerful technique for deep-tissue imaging, providing high spatial resolution at increased penetration depth. Nevertheless, imaging remains largely res…

physics.optics2024

Confocal Raman Microscopy with Adaptive Optics

J. D. Munoz-Bolanos, P. Rajaeipour, K. Kummer +4

Confocal Raman microscopy, a highly specific and label-free technique for the microscale study of thick samples, often presents difficulties due to weak Raman signals. Inhomogeneou…

physics.optics20246 cited

Complex-valued scatter compensation in nonlinear microscopy

Maximilian Sohmen, Maria Borozdova, Monika Ritsch-Marte +1

Nonlinear, i.e., multi-photon microscopy is a powerful technique for imaging deep into biological tissues. Its penetration depth can be increased further using adaptive optics. In…

physics.optics2023

Interactive simulation and visualization of point spread functions in single molecule imaging

Magdalena C. Schneider, Fabian Hinterer, Alexander Jesacher +1

The point spread function (PSF) is fundamental to any type of microscopy, most importantly so for single-molecule localization techniques, where the exact PSF shape is crucial for…

physics.optics20231 cited

High Speed Precise Refractive Index Modification for Photonic Chips through Phase Aberrated Pulsed Lasers

Bangshan Sun, Simon Moser, Alexander Jesacher +3

Integrated photonic chips have significant potential in telecommunications, classic computing, quantum systems, and topological photonics. Direct laser writing offers unique capabi…

physics.optics2021

Robust and bias-free localization of individual fixed dipole emitters achieving the Cramér Rao bound

Fabian Hinterer, Magdalena C. Schneider, Simon Hubmer +5

Single molecule localization microscopy has the potential to resolve structural details of biological samples at the nanometer length scale. However, to fully exploit the resolutio…