Examples of 'epifluorescence' in a sentence

Meaning of "epifluorescence"

Epifluorescence - a type of microscopy that uses fluorescence to highlight structures in a specimen
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  • Fluorescence produced by reflected rather than transmitted light.

How to use "epifluorescence" in a sentence

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epifluorescence
The dye is often used in epifluorescence microscopy.
The experiment was conducted using a microscope equipped with epifluorescence.
Cells were observed using epifluorescence and confocal microscopy.
The coverslips were then observed under epifluorescence.
The tissues were examined by epifluorescence microscopy or by confocal microscopy.
Cells were mounted in moviol and visualized with epifluorescence.
Fluorescence was detected using an epifluorescence microscope and appropriate filters.
Fluorescence is detected in a dissecting stereomicroscope equipped with epifluorescence detection.
The dye is often used in epifluorescence microscopy and flow cytometry.
This binding is observed as concentration of fluorescence on the beads by epifluorescence microscopy.
Sections were viewed under epifluorescence and photographed on black and white film.
Fluorescence was detected using an inverted epifluorescence microscope.
This step can be performed in any epifluorescence microscope with a filter sensitive to fluorophore used.
Slightly lower positive rates were determined by epifluorescence microscopy.
Epifluorescence image collection is carried out using a Leica microscope.

See also

Samples were viewed microscopically using epifluorescence illumination.
Representative epifluorescence microscopy images of DCX staining are shown in Fig.
Fluorescent images were captured with an epifluorescence microscope.
Epifluorescence was photographed using a Zeiss Axiophot microscope.
The visualization was carried out using an epifluorescence microscope.
This results in an increase in epifluorescence signal by a factor of 3x to 8x during experimental tests.
The antibodies were then visualized using an epifluorescence microscope.
Using epifluorescence microscopy, the two types of fluorescent cells can be visualized separately.
Cells were visualized using an epifluorescence microscope.
Measurements were performed on the stage of an inverted compound microscope equipped for epifluorescence.
Cells were observed using epifluorescence microscopy.
Cells are examined under a Zeiss II photomicroscope equipped with epifluorescence.
Cells were visualized by epifluorescence microscopy.
Attached bacteria were enumerated visually using a Nikon Diaphot Inverted Microscope equipped with epifluorescence.
Fluorescence images were captured using an epifluorescence microscope system.
While epifluorescence microscopy has been instrumental in the characterisation of plankton, the process is time-consuming.
All five samples were then analyzed in an epifluorescence microscope.
And viewing by epifluorescence illumination as shown in Figure 4B.
Picoplankton observed by epifluorescence.
Epifluorescence and transmitted light microscopy were acquired using a Nikon E400 microscope.
The localization of conjugates was visualized in an epifluorescence or confocal optical microscope.
For example, fluorescence can be detected using a fluorometer, which can detect epifluorescence.
Samples were visualized by epifluorescence microscopy.
Thus, the excitation beam crosses the objective ensuring observation of the sample by epifluorescence.
Fluorescence imaging techniques other than epifluorescence microscopy could be used.
The antibodies bound to the preparations were localized with rhodamine-conjugated anti-mouse antibodies, visualized by epifluorescence.
A fluorescent microscope capable of epifluorescence is needed for visualizing the stain preparations.
The cells are observed between slide and cover slip under an epifluorescence microscope.
Analysis was done in an epifluorescence Zeiss Axioscop microscope.
Polarized microscope with Trinocular system and epifluorescence.
Hybrids producing PHB were first identified by epifluorescence microscopy of tissues stained with Nile Blue A.
The slides were analysed using a Leica confocal microscope equipped with epifluorescence optics.
There is, however, one advantage associated with epifluorescence microscopy as compared with interferometric imaging.
Biofilm structure was characterised by Raman microspectroscopy and epifluorescence microscopy.
Preferably the detecting comprises detecting epifluorescence from underneath the multi-well plate or platform.

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