Zeiss Axioplan Universal microscope Instrukcja Użytkownika Strona 13

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Limited Only
By The Laws Of Physics
Allrounders
If flexibility and a wide range of techniques are required, universal
semi-apochromatic Plan-Neofluar objectives are the answer. With
transmission from the near UV, semi-apochromatic correction, excel-
lent image flattening, optimum working distances, low strain and high
numerical apertures, they are ideal for brightfield, darkfield, phase
contrast, DIC, polarization and fluorescence. High contrast makes
them perfect for capturing sharp, clear images for post processing and
subsequent analysis.
Photon counters
The Fluar range is designed for maximum transmission and photon col-
lection. Constructed from special optical glass, these objectives feature
high numerical apertures and high contrast, ensuring the best light
transmission throughout the visible spectral range down to the near
UV. Fluar objectives are your best choice if you want to capture even
the faintest fluorescence signal.
Immersion specialists
For the examination of living organisms and immersion preparations,
you need high-performance objectives capable of optically compensat-
ing differing refractive indices and volumes of the media involved.
These requirements are best met by the special family of Multi-
Immersion Plan Neofluar objectives or the apochromatically corrected
C-Apo family for the most demanding applications. Both will always
give you brilliant images.
Top performers
Thanks to the combination of best color correction with highest
numerical apertures, Plan-Apochromat objectives provide the ultimate
in resolution, image definition, and rendition of subtlest color differ-
ences. With their large apertures, they deliver outstanding brightfield
and DIC images and perform brilliantly in fluorescence microscopy.
1) Mycelia.
Grocott silvering.
Prof. Höfler, Munich
University of Technology
2) Salivary gland of a drosophila.
GFP labeling
3) Cell nuclei and mitosis.
Triple fluorescence.
Dr. Beensen,
Friedrich Schiller University, Jena
4) Embryo of C. elegans. DIC.
Prof. Schnabel, Braunschweig
University of Technology
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