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The simulations under different SNRs show the imaging qualities of the proposed algorithm and the reference algorithms.
Tick marks at the bottom of each graph show the imaging data for individual progressor versus stable subjects.
We show the imaging of a live, tumor-bearing mouse injected with the folate-DA conjugate (shown in Fig. 3). Figure 6(a) shows a photo of the live mouse during the experiment and its corresponding 3-D surface profile obtained using a laser line scan [ 33].
In order to show the imaging capacity of the system, as a proof of concept, we added a galvanometric scanning system and an objective at the distal end of our fiber (see section 2.5) which enables us to obtain a multiphotonic image of the tissue (Fig. 12 ).
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Figure 3a shows the imaging setup.
Figure 15 b shows the imaging results utilizing MIA.
Table 1 shows the imaging characteristics of the two entities.
Figure 5 shows the imaging results of nearly simultaneous-source data in which we see similar results compared with Fig. 4.
Figure 11 shows the imaging results with the length of the baseline 13,000 m by using the three algorithms, the slant range is 21,030 m and the squint angles are 18.0° and −18.0°, respectively.
Figure 2 shows the imaging table with the central section removed (Fig. 2a), with the section containing the standard aperture (Fig. 2b), and with the large 220-mm aperture (Fig. 2c).
Figure 3 shows the imaging results obtained for the mouse sagittal brain section at low instrumental step size (50 µm raster).
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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