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The classical methods of measuring the speed of vessels through water are described in the section Distance and speed measurements.
Model 4 resulted from backward selection of the neighbourhood variables "purchasing power of the street section", "distance to the nearest city centre", "type of residential area" and "housing type".
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Section distances were significantly greater across most of the wdw gV forewing when compared with wdw vV (Table 2).
The volume was calculated by measuring the area of the structure and multiplying by the section thickness and inter-section distance.
The volume of each brain nucleus was the sum of these measurements (Nissl and AR-mRNA, respectively) multiplied by the section thickness multiplied by the inter-section distance.
For each mouse, three liver lobes were examined (right lobe, left lateral lobe, and caudate lobe) using three slices per liver lobe with at least 20 sections distance between the individual slices.
They have been positioned along ten sections distanced by 3.70 m and connected at each section at both wing edges and at the centre.
Twenty-micrometer coronal brain cryosections were cut serially so to have sections distanced by ≈1 mm and stained with cresyl violet [21].
Images were acquired from the four retinal sections distanced 50 μm from each other per each group.
As this shrinkage affects mainly distances measured after staining (i.e., in the plane of section) but not between sections (distances measured prior to sectioning, on brains undergoing similar fixation and cryoprotection procedures), no correction factor was added.
The volume of cerebral infarction was calculated as the product of cross-sectional area for all sections and distance between sections, using the formula: V = t(A1+A2+...+An) - t(A1+An)/2 V: cerebral infarction volume (mm); t: 30μ (distance between neighbor slices); A: the cerebral infarction area at each slice.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com