Sentence examples for using a green filter from inspiring English sources

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Images were obtained from layer IV neurons and, for each area within the primary visual cortex (demarcated according to [ 29, 30]) two images were acquired, i.e., one using a green filter to eliminate background staining from methyl green and one using white light to later precisely localize neuronal nuclei.

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Photographer John Crane was out hiking around a few days ago, and came across a sweet ice cave that he felt would look great if he used a green filter on the flash.

A volume of 1150 μL of this mixture was then spun as described above and imaged using a green excitation filter (VG-6) with a bandwidth centered at 520 nm and a red emission filter (R-60) with a low cutoff at 600 nm (Edmund Industrial Optics, Barrington, NJ).

The sections were examined with the light and fluorescent microscope (Leica DMRXA Upright Microscope) using a green light filter I3 at 450 490 nm excitation and 510 nm emission.

At the end of the hour, all cells were washed with DMEM to remove excess BODIPY-ouabain from the apical surface, and were visualized under a fluorescent microscope using a green emission filter.

Embryos were dechorionated and placed in 1/1000 dilution of the acridine orange stock solution in embryo medium for 30 min. After washing in embryo medium, the embryos were placed into tricaine anesthetic solution (3-amino benzoic acid ethyl ester; Sigma-Aldrich) (70) and viewed immediately using a green fluorescence filter.

Briefly, greyscale images were collected at 10×in 10° increments using a green band-pass filter (BP 546 nm) with a crossed analyzer and polarizer coordinately rotated through a 90° span on a Leica DM/LP microscope.

Fluorescence was visualized using a green excitation range (excitation filter BP 530-560 nm, suppression filter LP 580 nm).

For constructs containing the dsRed selection marker (pGPD and pEC-dsRed), T 1 and T 2 selection was conducted using a green LED light with a red filter.

The human eye cannot distinguish small variations in fluorescence but is sufficient to identify the brightest callus clones on a plate using a green fluorescent light and a red filter, allowing the rapid visual selection of promising clones without sophisticated apparatus.

Fluorescence images were acquired using a green-fluorescent protein (GFP) filter set (excitation 450 490 nm, dichroic 495 nm, and emission bandpass 500 550 nm).

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