Volumetric HiLo microscopy employing an electrically tunable lens
Microscopy
Electricity
Fluorescence microscopy, Three-dimensional microscopy, Active or adaptive optics, Three-dimensional image processing, TU Dresden, Publishing Fund
ddc:530
Lens, Crystalline
Fluoreszenzmikroskopie, Dreidimensionale Mikroskopie, Aktive oder adaptive Optik, Dreidimensionale Bildverarbeitung, TU Dresden, Publikationsfonds
600
Equipment Design
info:eu-repo/classification/ddc/530
Lighting
Lenses
DOI:
10.1364/oe.24.015029
Publication Date:
2016-06-23T16:05:11Z
AUTHORS (7)
ABSTRACT
Electrically tunable lenses exhibit strong potential for fast motion-free axial scanning in a variety of microscopes. However, they also lead to a degradation of the achievable resolution because of aberrations and misalignment between illumination and detection optics that are induced by the scan itself. Additionally, the typically nonlinear relation between actuation voltage and axial displacement leads to over- or under-sampled frame acquisition in most microscopic techniques because of their static depth-of-field. To overcome these limitations, we present an Adaptive-Lens-High-and-Low-frequency (AL-HiLo) microscope that enables volumetric measurements employing an electrically tunable lens. By using speckle-patterned illumination, we ensure stability against aberrations of the electrically tunable lens. Its depth-of-field can be adjusted a-posteriori and hence enables to create flexible scans, which compensates for irregular axial measurement positions. The adaptive HiLo microscope provides an axial scanning range of 1 mm with an axial resolution of about 4 μm and sub-micron lateral resolution over the full scanning range. Proof of concept measurements at home-built specimens as well as zebrafish embryos with reporter gene-driven fluorescence in the thyroid gland are shown.
SUPPLEMENTAL MATERIAL
Coming soon ....
REFERENCES (25)
CITATIONS (35)
EXTERNAL LINKS
PlumX Metrics
RECOMMENDATIONS
FAIR ASSESSMENT
Coming soon ....
JUPYTER LAB
Coming soon ....