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Transmission electron microscopy analyses was conducted to examine cell disruption.
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Scanning electron microscopy analyses were performed on the films.
Three dimensional (3D) confocal microscopy analyses were carried out following aniline blue staining to establish the growth of pathogen within leaf tissues of Mgaloblishvili and Pinot noir.
Thermal analyses, mechanical tests and microscopy analyses were conducted to evaluate the behaviour of the material after contact with biodiesel.
Scanning electron microscopy analyses were carried out to highlight morphological changes.
Confocal microscopy analyses were performed using an inverted microscope, Leica DMIRE2 with a HCX APO L U-V-I 63.0 × 0.90 water immersion objective, equipped with a Leica TCS SP2 laser scanning device (Leica, Germany).
Samples for electron microscopy analyses were fixed in paraformaldehyde (final concentration 2.5%, w/v), washed 3 times for 15 min in sodium phosphate buffer (pH 7.4) and filtered on a 0.2 µm filter.
In situ scanning electron microscopy analyses were carried out to investigate the damage evolution under compressive load.
In this study, gas adsorption porosimetry and scanning electron microscopy analyses were used to investigate the surface properties of the coated layer.
Flow cytometry and fluorescence microscopy analyses were performed for GFP siRNAs, and Northern blot analysis was done to assess the HALP silencing effect.
High resolution X-ray diffraction and cross-sectional high resolution transmission electron microscopy analyses were performed to determine the mismatch and the thicknesses.
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