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The clear directional compensation found even in experimentally displaced birds indicates that first-year birds can also possess the ability to correct for displacement in some circumstances, possibly involving either some primitive form of true navigation, or 'sign posts', but the cues used for this are highly speculative.
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Despite the expectations from previous releases of displaced birds, the additional compensation by experimentally displaced birds indicates surprisingly, that in some circumstances, juveniles may be able to correct for displacements from the normal route.
Despite this, there are no theoretical objections to juvenile migrants being able to correct for displacements: Juveniles could correct by using experienced-based navigating toward a site already visited on migration, as birds already on the way on their first migration could be acquiring information necessary for later navigation.
As the name implies, the navigator-echo in TRON is not used to create a gating window (in other words, data acquired during the entire breathing cycle can be used for image formation), but is only used to track and correct for displacements.
Catharus thrushes appear to maintain constant headings and airspeeds regardless of wind speed or direction [31], so it is unlikely that the observed increase in heart rate with increasing wind speed was due to individuals correcting for displacement by winds.
Image registration during the biopsy procedure can correct for target displacement and may attribute to reduce the biopsy error [ 25].
Tremor is a wavelike motion of the eyes with small amplitudes (∼diameter of a cone in the fovea) while micro saccades are fast (10 – 100 deg/s) and jerky eye movements that correct for the displacements caused by drifts (0.5 deg/s) that carry the eye away from the fixation target.
Displacement curves after correcting for postseismic displacement are shown in red.
A simple model has been developed for the functional form of the correction for the displacement effect and all available data on square-nosed Pitot tubes used to arrive at a method of correcting for the displacement effect in case of Pitot tube measurements in shear flows.
The gas velocity through the channels is corrected for the displacement effect of the liquid film.
In order to correct for any possible displacement field due to microscope stage drift, we determined the displacements of beads >15 μm away from the cell, where the influence of the cell traction is negligible, and subtracted these from the displacement field at each node before the traction force computation.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com