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Through a detailed morphometric analysis we evaluate the topographic response to this major change in the tectonic setting and the influence in the drainage of Miocene extension and middle Pleistocene to present day transpression.
Using multivariate morphometric analysis, we find that phylogenetically unrelated taxa have convergently evolved troglomorphism; alternative phylogenetic hypotheses involving less morphological convergence are not supported by Bayesian hypothesis testing.
After morphometric analysis we can conclude that diabetes cases have significant thickening of perineurial sheath, along with endoneurial fibrosis, in comparison to control group.
For morphometric analysis, we focused on MGE cells situated at the PSB and Cx, and observed 4 types of morphologies (Fig. 6 A).
Using morphometric analysis we observed that L. amazonensis metacyclic forms are larger than L. braziliensis (6th and 10th days of culture)– 1 e)).
After morphometric analysis we observed that the highest mean value of total neural and epifascicular area was in the diabetic group (Table 1), which was significant in comparison to nondiabetic PVD group (P < 0.05 and P < 0.01, resp).
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Performing morphometric Sholl analysis we plotted the number of intersections with circles centered on the soma against the distance from the cell body.
Here we use morphometric analysis of spheroid echinate phytoliths from fossil and modern palms (Phoenix reclinata and Hyphaene petersiana) and their corresponding soils to determine if the differences are significant and can be confidently applied to the fossil samples.
However, in contrast to previous studies, we employed morphometric analysis to cluster species and confirm the relationships between the previously classified species-groups in Aphis.
Subsequently, we performed morphometric analysis of NMJs upon maximum z-projections of 3D stacks obtained with confocal microscopy as shown in Fig. 1E and F (gastrocnemius samples are depicted).
Here we used morphometric analysis of 3D digital representations of the specimens to pin point the shape features of the distal femur that are dependent on extrinsically produced stimuli from muscle contractions, showing a link between the shape changes, changes in local cell proliferation and predicted biophysical stimuli.
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