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At each time point, we searched for three different places with leukocyte infiltration in mouse ear pinna.
The mouse ear pinna was used as a living sample in the experiments with the goal to visualize and quantify the blood flow with microcirculatory tissue beds.
The entire mouse ear pinna was divided into 2.2 × 2.2 mm overlapping mosaics and each mosaic was scanned using UHS-OMAG scanning protocol.
A photograph of a mouse ear pinna captured by a digital camera is shown in Fig. 1B, in which the rectangle shown is a typical field of view and scanning range for OCT (~2.2 × 2.2 mm).
Figure 6A shows the en-face view of maximum-intensity projection map of MUSIC-OMAG quantification of micro-vasculature in the mouse ear pinna in a 2.2x2.2 mm area color-coded with the thresholding visualization technique.
In order to test the sensitivity of MUSIC-OMAG to capillary hemodynamic variations, we utilized the experimental data set of UHS-OMAG, which were continuously acquired during active control of the body temperature of the animal, giving an opportunity to observe capillary flow response in the mouse ear pinna.
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Mouse external ear pinnae were harvested and separated into dorsal and ventral leaflets.
Would they buy mouse ear headbands?
OCT image of a mouse ear [9].
The thin pinna of the mouse ear is an excellent site for initial in vivo imaging studies.
Bcl2−/− mice display runting, small ear pinnae, craniofacial abnormalities, premature greying, lymphopenia, polycystic kidney disease and premature death.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com