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Mean thickness for all 148 cores was 49.1 ± 36.5 mm, but if only those cores where Tibito Tephra was identified are sampled the mean becomes 55.4 ± 34 mm.
Both paws were measured and mean thickness for each animal was calculated.
In order to minimize variability and focus on local effects, cortical thickness maps were scaled by dividing the thickness at each vertex pair by the mean thickness for the respective hemisphere; mean scaled thickness for each ROI was used in both between-groups and within-subjects analyses.
The first step included only the nuisance covariates: age and left hemisphere mean thickness for models of region of interest thickness; age and grey matter volume for the model of hippocampal volume; and additionally overall naming scores in models of the domain index.
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The mean thicknesses for the superficial and mid zones were calculated as the area divided by the width.
The mean thicknesses for the hyaline, mixed-morphology, and fibrocartilage cores were 2.1, 2.4, and 2.8 mm, respectively (see Table 4).
The syneruptive-spouted type lahar deposits in the Akagawa River covered an area of ~1.2 × 105 m2 with a mean thickness of ~1 m, for a total volume of ~1.2 × 105 m3.
An average depth of 6 km to the top of the crystalline crust combined with the 22 24 km depth to the Moho implies a mean thickness of 16 18 km for the crust beneath the Amundsen Embayment Shelf Basin.
Other analytical results include conditions for transition from pulled to pushed premixed turbulent flames, dependence of flame speed on the magnitude of the CGT term and the shape of the mean reaction rate, analytical expressions for the mean thickness of the pushed flames and turbulent scalar flux within the pushed flames.
This is roughly compatible with the scale of emplaced lava flows (approximately 18 km in area for an assumed mean thickness of 20 m) and tephra deposits (5 m mean thickness inside the caldera, 0.1 m mean thickness beyond).
To allow for a more detailed subanalysis of various retinal layers, we used high-resolution SDOCT images and manual grading software to calculate mean thickness values for various retinal spaces for the ETDRS subfields 5 8.
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