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The divided pupil enhances contrast, because the transmitter and receiver paths are through opposite halves of the pupil, leading to rejection of light scattered by objects far from the field plane at z f.
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Rejection of excitation light was verified with a quartz disc, which showed less than 1 10 fluorescence ratio compared to the autofluorescence of normal tissue.
HiLo microscopy has been widely used in the context of background rejection for light-sheet microscopy [ 19, 20], TFM [ 21, 22] and depth-resolved microrheology [ 23]. Figure 1 shows the schematic diagram of an SLI TFM based on a Michelson interferometer.
OCT provides better penetration depth, at some cost in transverse resolution in comparison with microscopy imaging techniques such as confocal and multi-photon that rely on rejection of strongly scattered light through direct spatial filtering, or non-linear effects [ 8, 9].
It was evident to believers in Marxism as a kind of secular faith or religion that its interpretation as a species of experimental science left the way open for its refutation and revision or rejection in light of the analysis of future consequences.
The scattered light was detected using a triple-grating spectrometer with a tunable subtractive double first stage which provided rejection of the elastically scattered light; the Raman-scattered light was dispersed in a final 1-m focal length stage with a 600-groove/mm grating and was detected using a liquid nitrogen-cooled CCD.
A bit of light rejection won't turn you to stone, and you can be 99percentt sure no one's going to burn you at the stake for giving it go.
A polyimide membrane manufactured from a co-polymer of diaminophenylindane with benzophenone tetracarboxylic dianhydride has been shown to have excellent chemical resistance and economically viable flux and rejection characteristics for the separation of light hydrocarbon solvents from lube oil filtrates.
The lateral resolution is improved from 397 nm to 168 nm via the second-order NSIM, while the axial resolution is sharpened from 2.33 μm to 1.22 μm, for an enhancement factor of 1.9-fold, due the exact projected structured light and the rejection of background signals such as scattered light and out of focus signals.
Therefore, there is greater rejection of out-of-focus light in the divided-pupil configuration and higher contrast.
The experiments are aimed at: verifying the theoretical results described in the first part of this work; developing techniques that enable the effective rejection of the signal due to light backscattered off water (optical noise), in view of the realization of an operational AMULOR imager for underwater archaeology applications.
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